Coverage Report

Created: 2026-07-21 12:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/util/stopwatch.hpp
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
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// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// with the License.  You may obtain a copy of the License at
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//
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//   http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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// This file is copied from
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// https://github.com/apache/impala/blob/branch-2.9.0/be/src/util/stopwatch.hpp
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// and modified by Doris
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#pragma once
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#include <glog/logging.h>
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#include <time.h>
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#include <ctime>
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#include <sstream>
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#include <thread>
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#include "util/time.h"
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namespace doris {
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// Stop watch for reporting elapsed time in nanosec based on CLOCK_MONOTONIC.
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// It is as fast as Rdtsc.
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// It is also accurate because it not affected by cpu frequency changes and
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// it is not affected by user setting the system clock.
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// CLOCK_MONOTONIC represents monotonic time since some unspecified starting point.
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// It is good for computing elapsed time.
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template <clockid_t Clock>
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class CustomStopWatch {
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public:
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287M
    CustomStopWatch(bool auto_start = false) {
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287M
        _total_time = 0;
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287M
        _running = false;
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287M
        if (auto_start) {
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1.10k
            start();
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1.10k
        }
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287M
    }
_ZN5doris15CustomStopWatchILi1EEC2Eb
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43
264M
    CustomStopWatch(bool auto_start = false) {
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264M
        _total_time = 0;
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264M
        _running = false;
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264M
        if (auto_start) {
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1.10k
            start();
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1.10k
        }
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264M
    }
_ZN5doris15CustomStopWatchILi3EEC2Eb
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43
22.7M
    CustomStopWatch(bool auto_start = false) {
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22.7M
        _total_time = 0;
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22.7M
        _running = false;
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22.7M
        if (auto_start) {
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0
            start();
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0
        }
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22.7M
    }
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    timespec start_time() const { return _start; }
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300M
    void start() {
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300M
        if (!_running) {
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286M
            _record_start_thread_id();
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286M
            clock_gettime(Clock, &_start);
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286M
            _running = true;
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286M
        }
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300M
    }
_ZN5doris15CustomStopWatchILi1EE5startEv
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53
277M
    void start() {
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277M
        if (!_running) {
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263M
            _record_start_thread_id();
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263M
            clock_gettime(Clock, &_start);
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263M
            _running = true;
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263M
        }
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277M
    }
_ZN5doris15CustomStopWatchILi3EE5startEv
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53
22.8M
    void start() {
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22.8M
        if (!_running) {
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22.7M
            _record_start_thread_id();
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22.7M
            clock_gettime(Clock, &_start);
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22.7M
            _running = true;
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22.7M
        }
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22.8M
    }
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114M
    void stop() {
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114M
        if (_running) {
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113M
            _total_time += elapsed_time();
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113M
            _running = false;
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113M
        }
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114M
    }
_ZN5doris15CustomStopWatchILi1EE4stopEv
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101M
    void stop() {
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101M
        if (_running) {
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100M
            _total_time += elapsed_time();
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100M
            _running = false;
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100M
        }
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101M
    }
_ZN5doris15CustomStopWatchILi3EE4stopEv
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61
12.9M
    void stop() {
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12.9M
        if (_running) {
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12.9M
            _total_time += elapsed_time();
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12.9M
            _running = false;
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12.9M
        }
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12.9M
    }
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    // Restarts the timer. Returns the elapsed time until this point.
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16.3M
    int64_t reset() {
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16.3M
        int64_t ret = elapsed_time();
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16.3M
        if (_running) {
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12.9M
            _record_start_thread_id();
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12.9M
            clock_gettime(Clock, &_start);
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12.9M
        }
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16.3M
        return ret;
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16.3M
    }
_ZN5doris15CustomStopWatchILi3EE5resetEv
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69
922k
    int64_t reset() {
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922k
        int64_t ret = elapsed_time();
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922k
        if (_running) {
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53.5k
            _record_start_thread_id();
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53.5k
            clock_gettime(Clock, &_start);
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        }
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922k
        return ret;
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    }
_ZN5doris15CustomStopWatchILi1EE5resetEv
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69
15.4M
    int64_t reset() {
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15.4M
        int64_t ret = elapsed_time();
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15.4M
        if (_running) {
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12.9M
            _record_start_thread_id();
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12.9M
            clock_gettime(Clock, &_start);
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12.9M
        }
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15.4M
        return ret;
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15.4M
    }
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    // Returns time in nanosecond.
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    // Clamped to 0 to guard against rare CLOCK_MONOTONIC rollbacks.
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399M
    int64_t elapsed_time() const {
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399M
        if (!_running) {
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115M
            return _total_time;
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115M
        }
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283M
        _check_thread_id();
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283M
        timespec end;
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283M
        clock_gettime(Clock, &end);
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283M
        auto start_nanos = _start.tv_sec * NANOS_PER_SEC + _start.tv_nsec;
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283M
        auto end_nanos = end.tv_sec * NANOS_PER_SEC + end.tv_nsec;
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283M
        if (end_nanos < start_nanos) {
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11.5k
            LOG_EVERY_T(WARNING, 1)
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2.01k
                    << "time went backwards from " << start_nanos << " to " << end_nanos;
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11.5k
            return 0;
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11.5k
        }
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283M
        return end_nanos - start_nanos;
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283M
    }
_ZNK5doris15CustomStopWatchILi1EE12elapsed_timeEv
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366M
    int64_t elapsed_time() const {
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366M
        if (!_running) {
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102M
            return _total_time;
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102M
        }
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263M
        _check_thread_id();
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263M
        timespec end;
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263M
        clock_gettime(Clock, &end);
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263M
        auto start_nanos = _start.tv_sec * NANOS_PER_SEC + _start.tv_nsec;
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263M
        auto end_nanos = end.tv_sec * NANOS_PER_SEC + end.tv_nsec;
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263M
        if (end_nanos < start_nanos) {
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0
            LOG_EVERY_T(WARNING, 1)
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0
                    << "time went backwards from " << start_nanos << " to " << end_nanos;
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            return 0;
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0
        }
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263M
        return end_nanos - start_nanos;
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263M
    }
_ZNK5doris15CustomStopWatchILi3EE12elapsed_timeEv
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33.5M
    int64_t elapsed_time() const {
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33.5M
        if (!_running) {
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13.7M
            return _total_time;
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13.7M
        }
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19.8M
        _check_thread_id();
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19.8M
        timespec end;
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19.8M
        clock_gettime(Clock, &end);
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19.8M
        auto start_nanos = _start.tv_sec * NANOS_PER_SEC + _start.tv_nsec;
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19.8M
        auto end_nanos = end.tv_sec * NANOS_PER_SEC + end.tv_nsec;
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19.8M
        if (end_nanos < start_nanos) {
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11.5k
            LOG_EVERY_T(WARNING, 1)
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2.01k
                    << "time went backwards from " << start_nanos << " to " << end_nanos;
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11.5k
            return 0;
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11.5k
        }
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19.7M
        return end_nanos - start_nanos;
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19.8M
    }
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    // Return time in microseconds
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253k
    int64_t elapsed_time_microseconds() const { return elapsed_time() / 1000; }
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    // Return time in milliseconds
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305k
    int64_t elapsed_time_milliseconds() const { return elapsed_time() / 1000 / 1000; }
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    // Returns time in seconds.
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    // Clamped to 0 to guard against rare CLOCK_MONOTONIC rollbacks.
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71.8k
    int64_t elapsed_time_seconds(timespec end) const {
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71.8k
        if (!_running) {
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0
            return _total_time / 1000L / 1000L / 1000L;
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0
        }
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71.8k
        if (end.tv_sec < _start.tv_sec) {
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            auto start_nanos = _start.tv_sec * NANOS_PER_SEC + _start.tv_nsec;
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            auto end_nanos = end.tv_sec * NANOS_PER_SEC + end.tv_nsec;
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            LOG_EVERY_T(WARNING, 1)
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                    << "time went backwards from " << start_nanos << " to " << end_nanos;
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            return 0;
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        }
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71.7k
        return end.tv_sec - _start.tv_sec;
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71.8k
    }
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private:
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42.4M
    static std::string _get_thread_id() {
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42.4M
        std::stringstream ss;
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42.4M
        ss << std::this_thread::get_id();
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42.4M
        return ss.str();
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42.4M
    }
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298M
    void _record_start_thread_id() {
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298M
#ifndef NDEBUG
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298M
        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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            // CLOCK_THREAD_CPUTIME_ID is not supported on some platforms, e.g. macOS.
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            // So that we need to check it at runtime and fallback to CLOCK_MONOTONIC if it is not supported.
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22.7M
            _start_thread_id = _get_thread_id();
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22.7M
        }
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298M
#endif
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298M
    }
_ZN5doris15CustomStopWatchILi1EE23_record_start_thread_idEv
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128
275M
    void _record_start_thread_id() {
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275M
#ifndef NDEBUG
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        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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            // CLOCK_THREAD_CPUTIME_ID is not supported on some platforms, e.g. macOS.
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            // So that we need to check it at runtime and fallback to CLOCK_MONOTONIC if it is not supported.
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            _start_thread_id = _get_thread_id();
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        }
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275M
#endif
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275M
    }
_ZN5doris15CustomStopWatchILi3EE23_record_start_thread_idEv
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128
22.7M
    void _record_start_thread_id() {
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22.7M
#ifndef NDEBUG
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22.7M
        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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            // CLOCK_THREAD_CPUTIME_ID is not supported on some platforms, e.g. macOS.
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            // So that we need to check it at runtime and fallback to CLOCK_MONOTONIC if it is not supported.
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22.7M
            _start_thread_id = _get_thread_id();
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22.7M
        }
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22.7M
#endif
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22.7M
    }
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287M
    void _check_thread_id() const {
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287M
#ifndef NDEBUG
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287M
        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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19.9M
            auto current_thread_id = _get_thread_id();
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19.9M
            if (current_thread_id != _start_thread_id) {
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                LOG(WARNING) << "StopWatch started in thread " << _start_thread_id
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23.1k
                             << " but stopped in thread " << current_thread_id;
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23.1k
            }
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19.9M
        }
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287M
#endif
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287M
    }
_ZNK5doris15CustomStopWatchILi1EE16_check_thread_idEv
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138
267M
    void _check_thread_id() const {
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267M
#ifndef NDEBUG
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        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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            auto current_thread_id = _get_thread_id();
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            if (current_thread_id != _start_thread_id) {
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                LOG(WARNING) << "StopWatch started in thread " << _start_thread_id
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                             << " but stopped in thread " << current_thread_id;
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            }
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        }
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267M
#endif
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267M
    }
_ZNK5doris15CustomStopWatchILi3EE16_check_thread_idEv
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138
19.9M
    void _check_thread_id() const {
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19.9M
#ifndef NDEBUG
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19.9M
        if constexpr (Clock == CLOCK_THREAD_CPUTIME_ID) {
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19.9M
            auto current_thread_id = _get_thread_id();
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19.9M
            if (current_thread_id != _start_thread_id) {
143
                LOG(WARNING) << "StopWatch started in thread " << _start_thread_id
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23.1k
                             << " but stopped in thread " << current_thread_id;
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23.1k
            }
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19.9M
        }
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19.9M
#endif
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19.9M
    }
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    timespec _start;
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    int64_t _total_time; // in nanosec
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    bool _running;
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#ifndef NDEBUG
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    std::string _start_thread_id;
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#endif
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};
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// Stop watch for reporting elapsed time in nanosec based on CLOCK_MONOTONIC.
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// It is as fast as Rdtsc.
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// It is also accurate because it not affected by cpu frequency changes and
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// it is not affected by user setting the system clock.
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// CLOCK_MONOTONIC represents monotonic time since some unspecified starting point.
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// It is good for computing elapsed time.
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using MonotonicStopWatch = CustomStopWatch<CLOCK_MONOTONIC>;
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// Stop watch for reporting elapsed nanosec based on CLOCK_THREAD_CPUTIME_ID.
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using ThreadCpuStopWatch = CustomStopWatch<CLOCK_THREAD_CPUTIME_ID>;
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} // namespace doris