mirror of
https://github.com/zeromq/libzmq.git
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281 lines
8.6 KiB
C++
281 lines
8.6 KiB
C++
/*
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Copyright (c) 2007-2016 Contributors as noted in the AUTHORS file
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This file is part of libzmq, the ZeroMQ core engine in C++.
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libzmq is free software; you can redistribute it and/or modify it under
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the terms of the GNU Lesser General Public License (LGPL) as published
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by the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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As a special exception, the Contributors give you permission to link
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this library with independent modules to produce an executable,
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regardless of the license terms of these independent modules, and to
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copy and distribute the resulting executable under terms of your choice,
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provided that you also meet, for each linked independent module, the
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terms and conditions of the license of that module. An independent
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module is a module which is not derived from or based on this library.
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If you modify this library, you must extend this exception to your
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version of the library.
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libzmq is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
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License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "precompiled.hpp"
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#include "clock.hpp"
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#include "likely.hpp"
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#include "config.hpp"
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#include "err.hpp"
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#include "mutex.hpp"
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#include <stddef.h>
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#if defined _MSC_VER
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#if defined _WIN32_WCE
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#include <cmnintrin.h>
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#else
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#include <intrin.h>
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#if defined(_M_ARM) || defined(_M_ARM64)
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#include <arm_neon.h>
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#endif
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#endif
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#endif
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#if !defined ZMQ_HAVE_WINDOWS
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#include <sys/time.h>
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#endif
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#if defined HAVE_CLOCK_GETTIME || defined HAVE_GETHRTIME
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#include <time.h>
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#endif
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#if defined ZMQ_HAVE_VXWORKS
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#include "timers.h"
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#endif
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#if defined ZMQ_HAVE_OSX
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int alt_clock_gettime (int clock_id, timespec *ts)
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{
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clock_serv_t cclock;
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mach_timespec_t mts;
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host_get_clock_service (mach_host_self (), clock_id, &cclock);
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clock_get_time (cclock, &mts);
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mach_port_deallocate (mach_task_self (), cclock);
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ts->tv_sec = mts.tv_sec;
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ts->tv_nsec = mts.tv_nsec;
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return 0;
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}
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#endif
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#ifdef ZMQ_HAVE_WINDOWS
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typedef ULONGLONG (*f_compatible_get_tick_count64) ();
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static zmq::mutex_t compatible_get_tick_count64_mutex;
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ULONGLONG compatible_get_tick_count64 ()
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{
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#ifdef ZMQ_HAVE_WINDOWS_UWP
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const ULONGLONG result = ::GetTickCount64 ();
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return result;
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#else
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zmq::scoped_lock_t locker (compatible_get_tick_count64_mutex);
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static DWORD s_wrap = 0;
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static DWORD s_last_tick = 0;
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const DWORD current_tick = ::GetTickCount ();
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if (current_tick < s_last_tick)
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++s_wrap;
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s_last_tick = current_tick;
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const ULONGLONG result = (static_cast<ULONGLONG> (s_wrap) << 32)
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+ static_cast<ULONGLONG> (current_tick);
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return result;
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#endif
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}
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f_compatible_get_tick_count64 init_compatible_get_tick_count64 ()
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{
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f_compatible_get_tick_count64 func = NULL;
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#if !defined ZMQ_HAVE_WINDOWS_UWP
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const HMODULE module = ::LoadLibraryA ("Kernel32.dll");
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if (module != NULL)
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func = reinterpret_cast<f_compatible_get_tick_count64> (
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::GetProcAddress (module, "GetTickCount64"));
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#endif
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if (func == NULL)
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func = compatible_get_tick_count64;
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#if !defined ZMQ_HAVE_WINDOWS_UWP
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if (module != NULL)
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::FreeLibrary (module);
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#endif
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return func;
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}
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static f_compatible_get_tick_count64 my_get_tick_count64 =
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init_compatible_get_tick_count64 ();
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#endif
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#ifndef ZMQ_HAVE_WINDOWS
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const uint64_t usecs_per_msec = 1000;
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const uint64_t nsecs_per_usec = 1000;
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#endif
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const uint64_t usecs_per_sec = 1000000;
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zmq::clock_t::clock_t () :
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_last_tsc (rdtsc ()),
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#ifdef ZMQ_HAVE_WINDOWS
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_last_time (static_cast<uint64_t> ((*my_get_tick_count64) ()))
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#else
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_last_time (now_us () / usecs_per_msec)
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#endif
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{
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}
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uint64_t zmq::clock_t::now_us ()
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{
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#if defined ZMQ_HAVE_WINDOWS
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// Get the high resolution counter's accuracy.
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// While QueryPerformanceFrequency only needs to be called once, since its
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// value does not change during runtime, we query it here since this is a
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// static function. It might make sense to cache it, though.
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LARGE_INTEGER ticks_per_second;
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QueryPerformanceFrequency (&ticks_per_second);
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// What time is it?
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LARGE_INTEGER tick;
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QueryPerformanceCounter (&tick);
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// Convert the tick number into the number of seconds
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// since the system was started.
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const double ticks_div =
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static_cast<double> (ticks_per_second.QuadPart) / usecs_per_sec;
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return static_cast<uint64_t> (tick.QuadPart / ticks_div);
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#elif defined HAVE_CLOCK_GETTIME \
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&& (defined CLOCK_MONOTONIC || defined ZMQ_HAVE_VXWORKS)
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// Use POSIX clock_gettime function to get precise monotonic time.
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struct timespec tv;
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#if defined ZMQ_HAVE_OSX \
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&& __MAC_OS_X_VERSION_MIN_REQUIRED < 101200 // less than macOS 10.12
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int rc = alt_clock_gettime (SYSTEM_CLOCK, &tv);
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#else
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int rc = clock_gettime (CLOCK_MONOTONIC, &tv);
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#endif
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// Fix case where system has clock_gettime but CLOCK_MONOTONIC is not supported.
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// This should be a configuration check, but I looked into it and writing an
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// AC_FUNC_CLOCK_MONOTONIC seems beyond my powers.
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if (rc != 0) {
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#ifndef ZMQ_HAVE_VXWORKS
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// Use POSIX gettimeofday function to get precise time.
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struct timeval tv;
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int rc = gettimeofday (&tv, NULL);
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errno_assert (rc == 0);
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return tv.tv_sec * usecs_per_sec + tv.tv_usec;
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#endif
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}
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return tv.tv_sec * usecs_per_sec + tv.tv_nsec / nsecs_per_usec;
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#elif defined HAVE_GETHRTIME
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return gethrtime () / nsecs_per_usec;
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#else
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LIBZMQ_UNUSED (nsecs_per_usec);
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// Use POSIX gettimeofday function to get precise time.
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struct timeval tv;
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int rc = gettimeofday (&tv, NULL);
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errno_assert (rc == 0);
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return tv.tv_sec * usecs_per_sec + tv.tv_usec;
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#endif
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}
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uint64_t zmq::clock_t::now_ms ()
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{
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const uint64_t tsc = rdtsc ();
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// If TSC is not supported, get precise time and chop off the microseconds.
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if (!tsc) {
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#ifdef ZMQ_HAVE_WINDOWS
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// Under Windows, now_us is not so reliable since QueryPerformanceCounter
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// does not guarantee that it will use a hardware that offers a monotonic timer.
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// So, lets use GetTickCount when GetTickCount64 is not available with an workaround
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// to its 32 bit limitation.
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return static_cast<uint64_t> ((*my_get_tick_count64) ());
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#else
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return now_us () / usecs_per_msec;
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#endif
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}
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// If TSC haven't jumped back (in case of migration to a different
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// CPU core) and if not too much time elapsed since last measurement,
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// we can return cached time value.
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if (likely (tsc - _last_tsc <= (clock_precision / 2) && tsc >= _last_tsc))
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return _last_time;
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_last_tsc = tsc;
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#ifdef ZMQ_HAVE_WINDOWS
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_last_time = static_cast<uint64_t> ((*my_get_tick_count64) ());
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#else
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_last_time = now_us () / usecs_per_msec;
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#endif
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return _last_time;
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}
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uint64_t zmq::clock_t::rdtsc ()
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{
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#if (defined _MSC_VER && (defined _M_IX86 || defined _M_X64))
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return __rdtsc ();
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#elif defined(_MSC_VER) && defined(_M_ARM) // NC => added for windows ARM
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return __rdpmccntr64 ();
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#elif defined(_MSC_VER) && defined(_M_ARM64) // NC => added for windows ARM64
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//return __rdpmccntr64 ();
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//return __rdtscp (nullptr);
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// todo: find proper implementation for ARM64
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static uint64_t snCounter = 0;
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return ++snCounter;
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#elif (defined __GNUC__ && (defined __i386__ || defined __x86_64__))
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uint32_t low, high;
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__asm__ volatile("rdtsc" : "=a"(low), "=d"(high));
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return static_cast<uint64_t> (high) << 32 | low;
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#elif (defined __SUNPRO_CC && (__SUNPRO_CC >= 0x5100) \
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&& (defined __i386 || defined __amd64 || defined __x86_64))
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union
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{
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uint64_t u64val;
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uint32_t u32val[2];
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} tsc;
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asm("rdtsc" : "=a"(tsc.u32val[0]), "=d"(tsc.u32val[1]));
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return tsc.u64val;
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#elif defined(__s390__)
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uint64_t tsc;
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asm("\tstck\t%0\n" : "=Q"(tsc) : : "cc");
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return tsc;
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#else
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struct timespec ts;
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#if defined ZMQ_HAVE_OSX \
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&& __MAC_OS_X_VERSION_MIN_REQUIRED < 101200 // less than macOS 10.12
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alt_clock_gettime (SYSTEM_CLOCK, &ts);
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#else
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clock_gettime (CLOCK_MONOTONIC, &ts);
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#endif
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return static_cast<uint64_t> (ts.tv_sec) * nsecs_per_usec * usecs_per_sec
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+ ts.tv_nsec;
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#endif
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}
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