Coverage Report

Created: 2026-07-30 06:27

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvenc/source/Lib/Utilities/NoMallocThreadPool.cpp
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/* -----------------------------------------------------------------------------
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The copyright in this software is being made available under the Clear BSD
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License, included below. No patent rights, trademark rights and/or 
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other Intellectual Property Rights other than the copyrights concerning 
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the Software are granted under this license.
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The Clear BSD License
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Copyright (c) 2019-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVenC Authors.
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted (subject to the limitations in the disclaimer below) provided that
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the following conditions are met:
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     * Redistributions of source code must retain the above copyright notice,
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     this list of conditions and the following disclaimer.
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     * Redistributions in binary form must reproduce the above copyright
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     notice, this list of conditions and the following disclaimer in the
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     documentation and/or other materials provided with the distribution.
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     * Neither the name of the copyright holder nor the names of its
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     contributors may be used to endorse or promote products derived from this
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     software without specific prior written permission.
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NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY
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THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
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CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
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PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
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BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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------------------------------------------------------------------------------------------- */
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/** \file     NoMallocThreadPool.cpp
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    \brief    thread pool
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*/
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#include "NoMallocThreadPool.h"
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#ifdef HAVE_PTHREADS
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#  include <pthread.h>
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4.86k
#  define THREAD_MIN_STACK_SIZE 1024 * 1024
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#endif
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//! \ingroup Utilities
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//! \{
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namespace vvenc {
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#if ENABLE_TIME_PROFILING_MT_MODE
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thread_local std::unique_ptr<TProfiler> ptls;
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#endif
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NoMallocThreadPool::NoMallocThreadPool( int numThreads, const char * threadPoolName, const VVEncCfg* encCfg )
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1.21k
  : m_poolName( threadPoolName )
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1.21k
{
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1.21k
  if( numThreads < 0 )
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0
  {
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0
    numThreads = std::thread::hardware_concurrency();
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0
  }
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6.08k
  for( int i = 0; i < numThreads; ++i )
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4.86k
  {
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4.86k
    m_threads.emplace_back( &NoMallocThreadPool::threadProc, this, i, *encCfg );
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4.86k
  }
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1.21k
}
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NoMallocThreadPool::~NoMallocThreadPool()
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1.21k
{
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1.21k
  m_exitThreads = true;
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1.21k
  waitForThreads();
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1.21k
}
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bool NoMallocThreadPool::processTasksOnMainThread()
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0
{
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0
  CHECK( m_threads.size() != 0, "should not be used with multiple threads" );
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0
  bool         progress      = false;
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0
  TaskIterator firstFailedIt = m_tasks.end();
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0
  for( auto taskIt = findNextTask( 0, m_tasks.begin() ); taskIt.isValid(); taskIt = findNextTask( 0, taskIt ) )
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0
  {
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0
    const bool success = processTask( 0, *taskIt );
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0
    progress |= success;
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97
0
    if( taskIt == firstFailedIt )
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0
    {
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0
      if( success )
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0
      {
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        // first failed was successful -> reset
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0
        firstFailedIt = m_tasks.end();
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0
      }
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0
      else if( progress )
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0
      {
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        // reset progress, try another round
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0
        progress = false;
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0
      }
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0
      else
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0
      {
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        // no progress -> exit
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0
        break;
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0
      }
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0
    }
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0
    else if( !success && !firstFailedIt.isValid() )
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0
    {
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0
      firstFailedIt = taskIt;
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0
    }
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0
  }
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  // return true if all done (-> false if some tasks blocked due to barriers)
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0
  return std::all_of( m_tasks.begin(), m_tasks.end(), []( Slot& t ) { return t.state == FREE; } );
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0
}
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void NoMallocThreadPool::shutdown( bool block )
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1.21k
{
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1.21k
  m_exitThreads = true;
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1.21k
  if( block )
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1.21k
  {
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1.21k
    waitForThreads();
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  }
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1.21k
}
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void NoMallocThreadPool::waitForThreads()
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2.43k
{
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2.43k
  for( auto& t: m_threads )
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9.72k
  {
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9.72k
    if( t.joinable() )
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4.86k
      t.join();
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  }
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2.43k
}
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void NoMallocThreadPool::threadProc( int threadId, const VVEncCfg& encCfg )
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4.86k
{
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#if __linux
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4.86k
  if( !m_poolName.empty() )
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4.86k
  {
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    std::string threadName( m_poolName + std::to_string( threadId ) );
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    pthread_setname_np( pthread_self(), threadName.c_str() );
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  }
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#endif
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#if ENABLE_TIME_PROFILING_MT_MODE
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  ptls.reset( timeProfilerCreate( encCfg ) );
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  {
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    std::unique_lock< std::mutex > lock( m_nextFillSlotMutex );
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    TProfiler *tp = ptls.get();
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    profilers.push_back( tp );
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  }
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#endif
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4.86k
  auto nextTaskIt = m_tasks.begin();
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31.6k
  while( !m_exitThreads )
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  {
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    auto taskIt = findNextTask( threadId, nextTaskIt );
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    if( !taskIt.isValid() )
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    {
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      std::unique_lock<std::mutex> l( m_idleMutex, std::defer_lock );
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      ITT_TASKSTART( itt_domain_thrd, itt_handle_TPspinWait );
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18.0k
      m_waitingThreads.fetch_add( 1, std::memory_order_relaxed );
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      const auto startWait = std::chrono::steady_clock::now();
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96.7M
      while( !m_exitThreads )
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96.7M
      {
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        taskIt = findNextTask( threadId, nextTaskIt );
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96.7M
        if( taskIt.isValid() || m_exitThreads )
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16.4k
        {
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          break;
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16.4k
        }
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96.6M
        if( !l.owns_lock()
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794k
            && m_waitingThreads.load( std::memory_order_relaxed ) > 1
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702k
            && ( BUSY_WAIT_TIME.count() == 0 || std::chrono::steady_clock::now() - startWait > BUSY_WAIT_TIME )
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10.7k
            && !m_exitThreads )
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10.7k
        {
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10.7k
          ITT_TASKSTART(itt_domain_thrd, itt_handle_TPblocked);
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10.7k
          l.lock();
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10.7k
          ITT_TASKEND(itt_domain_thrd, itt_handle_TPblocked);
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10.7k
        }
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96.6M
        else
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96.6M
        {
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96.6M
          std::this_thread::yield();
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96.6M
        }
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96.6M
      }
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18.0k
      m_waitingThreads.fetch_sub( 1, std::memory_order_relaxed );
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18.0k
      ITT_TASKEND( itt_domain_thrd, itt_handle_TPspinWait );
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18.0k
    }
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31.6k
    if( m_exitThreads )
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4.85k
    {
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4.85k
      return;
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4.85k
    }
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26.7k
    processTask( threadId, *taskIt );
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26.7k
    nextTaskIt = taskIt;
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26.7k
    nextTaskIt.incWrap();
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26.7k
  }
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4.86k
}
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NoMallocThreadPool::TaskIterator NoMallocThreadPool::findNextTask( int threadId, TaskIterator startSearch )
210
96.7M
{
211
96.7M
  if( !startSearch.isValid() )
212
0
  {
213
0
    startSearch = m_tasks.begin();
214
0
  }
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96.7M
  bool first = true;
216
12.4G
  for( auto it = startSearch; it != startSearch || first; it.incWrap() )
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12.3G
  {
218
#if ENABLE_VALGRIND_CODE
219
    MutexLock lock( m_extraMutex );
220
#endif
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12.3G
    first = false;
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12.3G
    Slot& t = *it;
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12.3G
    auto expected = WAITING;
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12.3G
    if( t.state.load( std::memory_order_relaxed ) == WAITING && t.state.compare_exchange_strong( expected, RUNNING ) )
227
142M
    {
228
142M
      if( !t.barriers.empty() )
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41.4M
      {
230
41.4M
        if( std::any_of( t.barriers.cbegin(), t.barriers.cend(), []( const Barrier* b ) { return b && b->isBlocked(); } ) )
231
41.4M
        {
232
          // reschedule
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41.4M
          t.state.store( WAITING );
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41.4M
          continue;
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41.4M
        }
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1.21k
        t.barriers.clear();   // clear barriers, so we don't need to check them on the next try (we assume they won't get locked again)
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1.21k
      }
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100M
      if( t.readyCheck && t.readyCheck( threadId, t.param ) == false )
239
100M
      {
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        // reschedule
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100M
        t.state.store( WAITING );
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100M
        continue;
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100M
      }
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46.7k
      return it;
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100M
    }
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12.3G
  }
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96.6M
  return {};
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96.7M
}
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251
bool NoMallocThreadPool::processTask( int threadId, NoMallocThreadPool::Slot& task )
252
26.7k
{
253
26.7k
  const bool success = task.func( threadId, task.param );
254
#if ENABLE_VALGRIND_CODE
255
  MutexLock lock( m_extraMutex );
256
#endif
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26.7k
  if( !success )
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21.7k
  {
259
21.7k
    task.state = WAITING;
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21.7k
    return false;
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21.7k
  }
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263
5.00k
  if( task.done != nullptr )
264
0
  {
265
0
    task.done->unlock();
266
0
  }
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5.00k
  if( task.counter != nullptr )
268
3.82k
  {
269
3.82k
    --(*task.counter);
270
3.82k
  }
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272
5.00k
  task.state = FREE;
273
274
5.00k
  return true;
275
26.7k
}
276
277
#ifdef HAVE_PTHREADS
278
279
template<class TFunc, class... TArgs>
280
NoMallocThreadPool::PThread::PThread( TFunc&& func, TArgs&&... args )
281
4.86k
{
282
4.86k
  using WrappedCall     = std::function<void()>;
283
4.86k
  std::unique_ptr<WrappedCall> call = std::make_unique<WrappedCall>( std::bind( func, args... ) );
284
285
4.86k
  using PThreadsStartFn = void* (*) ( void* );
286
4.86k
  PThreadsStartFn threadFn = []( void* p ) -> void*
287
4.86k
  {
288
4.86k
    std::unique_ptr<WrappedCall> call( static_cast<WrappedCall*>( p ) );
289
290
4.86k
    ( *call )();
291
292
4.86k
    return nullptr;
293
4.86k
  };
294
295
4.86k
  pthread_attr_t attr;
296
4.86k
  int ret = pthread_attr_init( &attr );
297
4.86k
  CHECK( ret != 0, "pthread_attr_init() failed" );
298
299
4.86k
  try
300
4.86k
  {
301
4.86k
    size_t currStackSize = 0;
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4.86k
    ret = pthread_attr_getstacksize( &attr, &currStackSize );
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4.86k
    CHECK( ret != 0, "pthread_attr_getstacksize() failed" );
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305
4.86k
    if( currStackSize < THREAD_MIN_STACK_SIZE )
306
0
    {
307
0
      ret = pthread_attr_setstacksize( &attr, THREAD_MIN_STACK_SIZE );
308
0
      CHECK( ret != 0, "pthread_attr_setstacksize() failed" );
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310
0
#  if defined( _DEBUG ) && !defined( __MINGW32__ ) && !defined( __MINGW64__ )
311
0
      ret = pthread_attr_setguardsize( &attr, 1024 * 1024 );   // set stack guard size to 1MB to more reliably deteck stack overflows
312
0
      CHECK( ret != 0, "pthread_attr_setguardsize() failed" );
313
0
#  endif
314
0
    }
315
4.86k
    m_joinable = 0 == pthread_create( &m_id, &attr, threadFn, call.get() );
316
4.86k
    CHECK( !m_joinable, "pthread_create() faild" );
317
318
4.86k
    call.release();   // will now be freed by the thread
319
320
4.86k
    pthread_attr_destroy( &attr );
321
4.86k
  }
322
4.86k
  catch( ... )
323
4.86k
  {
324
0
    pthread_attr_destroy( &attr );
325
0
    throw;
326
0
  }
327
4.86k
}
328
329
NoMallocThreadPool::PThread& NoMallocThreadPool::PThread::operator=( PThread&& other )
330
3.64k
{
331
3.64k
  m_id             = other.m_id;
332
3.64k
  m_joinable       = other.m_joinable;
333
3.64k
  other.m_id       = 0;
334
3.64k
  other.m_joinable = false;
335
3.64k
  return *this;
336
3.64k
}
337
338
void NoMallocThreadPool::PThread::join()
339
4.86k
{
340
4.86k
  if( m_joinable )
341
4.86k
  {
342
4.86k
    m_joinable = false;
343
4.86k
    pthread_join( m_id, nullptr );
344
4.86k
  }
345
4.86k
}
346
347
#endif   // HAVE_PTHREADS
348
349
} // namespace vvenc
350
351
//! \}
352