Coverage Report

Created: 2026-09-02 06:43

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvdec/source/Lib/Utilities/ThreadPool.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
2
The copyright in this software is being made available under the Clear BSD
3
License, included below. No patent rights, trademark rights and/or 
4
other Intellectual Property Rights other than the copyrights concerning 
5
the Software are granted under this license.
6
7
The Clear BSD License
8
9
Copyright (c) 2018-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVdeC Authors.
10
All rights reserved.
11
12
Redistribution and use in source and binary forms, with or without modification,
13
are permitted (subject to the limitations in the disclaimer below) provided that
14
the following conditions are met:
15
16
     * Redistributions of source code must retain the above copyright notice,
17
     this list of conditions and the following disclaimer.
18
19
     * Redistributions in binary form must reproduce the above copyright
20
     notice, this list of conditions and the following disclaimer in the
21
     documentation and/or other materials provided with the distribution.
22
23
     * Neither the name of the copyright holder nor the names of its
24
     contributors may be used to endorse or promote products derived from this
25
     software without specific prior written permission.
26
27
NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY
28
THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
29
CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
30
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
31
PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
32
CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
33
EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
34
PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
35
BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
36
IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
37
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38
POSSIBILITY OF SUCH DAMAGE.
39
40
41
------------------------------------------------------------------------------------------- */
42
43
#include "ThreadPool.h"
44
45
#include <chrono>
46
47
#if __linux
48
# include <pthread.h>
49
#endif
50
51
52
namespace vvdec
53
{
54
using namespace std::chrono_literals;
55
56
std::mutex Barrier::s_exceptionLock{};
57
58
// block threads after busy-waiting this long
59
14
const static auto VVDEC_BUSY_WAIT_TIME_MIN = [] {
60
14
  const char* env = getenv( "VVDEC_BUSY_WAIT_TIME_MIN" );
61
14
  if( env )
62
0
    return std::chrono::microseconds( int( atof( env ) * 1000 ) );
63
14
  return std::chrono::microseconds( 1ms );
64
14
}();
65
66
// block last waiting thread after this time
67
14
const static auto VVDEC_BUSY_WAIT_TIME_MAX = [] {
68
14
  const char* env = getenv( "VVDEC_BUSY_WAIT_TIME_MAX" );
69
14
  if( env )
70
0
    return atoi( env ) * 1ms;
71
14
  return 5ms;
72
14
}();
73
74
75
struct ThreadPool::TaskException : public std::exception
76
{
77
  explicit TaskException( std::exception_ptr e, ThreadPool::Slot& task )
78
0
    : m_originalException( e )
79
0
    , m_task( task )
80
0
  {}
81
  std::exception_ptr m_originalException;
82
  ThreadPool::Slot&  m_task;
83
};
84
85
class ScopeIncDecCounter
86
{
87
  std::atomic_uint& m_cntr;
88
89
public:
90
20.8k
  explicit ScopeIncDecCounter( std::atomic_uint& counter ): m_cntr( counter ) { m_cntr.fetch_add( 1, std::memory_order_relaxed ); }
91
20.9k
  ~ScopeIncDecCounter()                                                       { m_cntr.fetch_sub( 1, std::memory_order_relaxed ); }
92
  CLASS_COPY_MOVE_DELETE( ScopeIncDecCounter )
93
};
94
95
// ---------------------------------------------------------------------------
96
// Thread Pool
97
// ---------------------------------------------------------------------------
98
99
ThreadPool::ThreadPool( int numThreads, const char* threadPoolName )
100
659
  : m_poolName( threadPoolName )
101
659
  , m_threads( numThreads < 0 ? std::thread::hardware_concurrency() : numThreads )
102
659
  , m_poolPause( m_threads.size() )
103
659
{
104
659
  int tid = 0;
105
659
  for( auto& t: m_threads )
106
21.0k
  {
107
21.0k
    t = std::thread( &ThreadPool::threadProc, this, tid++ );
108
21.0k
  }
109
659
}
110
111
ThreadPool::~ThreadPool()
112
659
{
113
659
  m_exitThreads = true;
114
115
659
  waitForThreads();
116
659
}
117
118
bool ThreadPool::processTasksOnMainThread()
119
0
{
120
0
  CHECK_FATAL( m_threads.size() != 0, "should not be used with multiple threads" );
121
122
0
  TaskIterator taskIt;
123
0
  while( true )
124
0
  {
125
0
    try
126
0
    {
127
0
      if( !taskIt.isValid() )
128
0
      {
129
0
        taskIt = findNextTask( 0, m_tasks.begin() );
130
0
      }
131
0
      else
132
0
      {
133
0
        taskIt = findNextTask( 0, taskIt );
134
0
      }
135
136
0
      if( !taskIt.isValid() )
137
0
      {
138
0
        break;
139
0
      }
140
0
      processTask( 0, *taskIt );
141
0
    }
142
0
    catch( TaskException& e )
143
0
    {
144
0
      handleTaskException( e.m_originalException, e.m_task.done, e.m_task.counter, &e.m_task.state );
145
0
    }
146
0
  }
147
148
  // return true if all done (-> false if some tasks blocked due to barriers)
149
0
  return std::all_of( m_tasks.begin(), m_tasks.end(), []( Slot& t ) { return t.state == FREE; } );
150
0
}
151
152
void ThreadPool::shutdown( bool block )
153
659
{
154
659
  m_exitThreads = true;
155
659
  if( block )
156
659
  {
157
659
    waitForThreads();
158
659
  }
159
659
}
160
161
void ThreadPool::waitForThreads()
162
1.31k
{
163
1.31k
  m_poolPause.unpauseIfPaused( m_poolPause.acquireLock() );
164
165
1.31k
  for( auto& t: m_threads )
166
42.1k
  {
167
42.1k
    if( t.joinable() )
168
21.0k
      t.join();
169
42.1k
  }
170
1.31k
}
171
172
void ThreadPool::checkAndThrowThreadPoolException()
173
0
{
174
0
  if( !m_exceptionFlag.load() )
175
0
  {
176
0
    return;
177
0
  }
178
179
0
  msg( WARNING, "ThreadPool is in exception state." );
180
181
0
  std::exception_ptr tmp = m_threadPoolException;
182
0
  m_threadPoolException  = tmp;
183
0
  m_exceptionFlag.store( false );
184
185
0
  std::rethrow_exception( tmp );
186
0
}
187
188
void ThreadPool::threadProc( int threadId )
189
21.0k
{
190
21.0k
#if __linux
191
21.0k
  if( !m_poolName.empty() )
192
21.0k
  {
193
21.0k
    std::string threadName( m_poolName + std::to_string( threadId ) );
194
21.0k
    pthread_setname_np( pthread_self(), threadName.c_str() );
195
21.0k
  }
196
21.0k
#endif
197
198
21.0k
  auto nextTaskIt = m_tasks.begin();
199
21.0k
  while( !m_exitThreads )
200
21.0k
  {
201
21.0k
    try
202
21.0k
    {
203
21.0k
      auto taskIt = findNextTask( threadId, nextTaskIt );
204
21.0k
      if( !taskIt.isValid() )   // immediately try again without any delay
205
20.3k
      {
206
20.3k
        taskIt = findNextTask( threadId, nextTaskIt );
207
20.3k
      }
208
21.0k
      if( !taskIt.isValid() )   // still nothing found, go into idle loop searching for more tasks
209
20.3k
      {
210
20.3k
        ITT_TASKSTART( itt_domain_thrd, itt_handle_TPspinWait );
211
212
20.3k
        std::unique_lock<std::mutex> idleLock( m_idleMutex, std::defer_lock );
213
214
20.3k
        const auto startWait = std::chrono::steady_clock::now();
215
20.3k
        bool       didBlock  = false;   // if the previous iteration did block we don't want to yield in this iteration
216
359k
        while( !m_exitThreads )
217
339k
        {
218
339k
          if( !didBlock )
219
338k
          {
220
338k
            std::this_thread::yield();
221
338k
          }
222
339k
          didBlock = false;
223
224
339k
          taskIt = findNextTask( threadId, nextTaskIt );
225
339k
          if( taskIt.isValid() || m_exitThreads.load( std::memory_order_relaxed ) )
226
100
          {
227
100
            break;
228
100
          }
229
230
339k
          if( !idleLock.owns_lock() )
231
127k
          {
232
128k
            if( VVDEC_BUSY_WAIT_TIME_MIN.count() == 0 || std::chrono::steady_clock::now() - startWait > VVDEC_BUSY_WAIT_TIME_MIN )
233
20.8k
            {
234
20.8k
              ITT_TASKSTART( itt_domain_thrd, itt_handle_TPblocked );
235
20.8k
              ScopeIncDecCounter cntr( m_poolPause.m_waitingForLockThreads );
236
20.8k
              idleLock.lock();
237
20.8k
              didBlock = true;
238
20.8k
              ITT_TASKEND( itt_domain_thrd, itt_handle_TPblocked );
239
20.8k
            }
240
127k
          }
241
211k
          else if( std::chrono::steady_clock::now() - startWait > VVDEC_BUSY_WAIT_TIME_MAX )
242
30.1k
          {
243
#if THREAD_POOL_TASK_NAMES
244
            printWaitingTasks();
245
#endif
246
30.1k
            didBlock = m_poolPause.pauseIfAllOtherThreadsWaiting(
247
30.1k
              [&]
248
30.1k
              {
249
593
                taskIt = findNextTask( threadId, nextTaskIt );
250
593
                return taskIt.isValid() || m_exitThreads;
251
593
              } );
252
30.1k
            if( taskIt.isValid() )
253
0
            {
254
0
              break;
255
0
            }
256
30.1k
          }
257
339k
        }
258
259
20.3k
        ITT_TASKEND( itt_domain_thrd, itt_handle_TPspinWait );
260
20.3k
      }
261
21.0k
      if( m_exitThreads )
262
21.0k
      {
263
21.0k
        return;
264
21.0k
      }
265
266
18.4E
      processTask( threadId, *taskIt );
267
268
18.4E
      nextTaskIt = taskIt;
269
18.4E
      nextTaskIt.incWrap();
270
18.4E
    }
271
21.0k
    catch( TaskException& e )
272
21.0k
    {
273
0
      handleTaskException( e.m_originalException, e.m_task.done, e.m_task.counter, &e.m_task.state );
274
0
    }
275
21.0k
    catch( std::exception& e )
276
21.0k
    {
277
0
      msg( ERROR, "ERROR: Caught unexpected exception from within the thread pool: %s", e.what() );
278
279
0
      if( m_exceptionFlag.exchange( true ) )
280
0
      {
281
0
        msg( ERROR, "ERROR: Another exception has already happend in the thread pool, but we can only store one." );
282
0
        return;
283
0
      }
284
0
      m_threadPoolException = std::current_exception();
285
0
      return;
286
0
    }
287
21.0k
  }
288
21.0k
}
289
290
bool ThreadPool::checkTaskReady( int threadId, CBarrierVec& barriers, ThreadPool::TaskFunc readyCheck, void* taskParam )
291
0
{
292
0
  if( !barriers.empty() )
293
0
  {
294
    // don't break early, because isBlocked() also checks exception state
295
0
    if( std::count_if( barriers.cbegin(), barriers.cend(), []( const Barrier* b ) { return b && b->isBlocked(); } ) )
296
0
    {
297
0
      return false;
298
0
    }
299
0
    barriers.clear();
300
0
  }
301
302
0
  if( readyCheck && readyCheck( threadId, taskParam ) == false )
303
0
  {
304
0
    return false;
305
0
  }
306
307
0
  return true;
308
0
}
309
310
ThreadPool::TaskIterator ThreadPool::findNextTask( int threadId, TaskIterator startSearch )
311
379k
{
312
379k
  if( !startSearch.isValid() )
313
0
  {
314
0
    startSearch = m_tasks.begin();
315
0
  }
316
379k
  bool first = true;
317
30.3M
  for( auto it = startSearch; it != startSearch || first; it.incWrap() )
318
30.0M
  {
319
30.0M
    first = false;
320
30.0M
    try
321
30.0M
    {
322
30.0M
      Slot& task     = *it;
323
30.0M
      auto  expected = WAITING;
324
30.0M
      if( task.state == expected && task.state.compare_exchange_strong( expected, RUNNING ) )
325
0
      {
326
0
        if( checkTaskReady( threadId, task.barriers, task.readyCheck, task.param ) )
327
0
        {
328
0
          return it;
329
0
        }
330
331
        // reschedule
332
0
        task.state = WAITING;
333
0
      }
334
30.0M
    }
335
30.0M
    catch( ... )
336
30.0M
    {
337
0
      throw TaskException( std::current_exception(), *it );
338
0
    }
339
30.0M
  }
340
384k
  return {};
341
379k
}
342
343
bool ThreadPool::processTask( int threadId, ThreadPool::Slot& task )
344
0
{
345
0
  try
346
0
  {
347
0
    const bool success = task.func( threadId, task.param );
348
0
    if( !success )
349
0
    {
350
0
      task.state = WAITING;
351
0
      return false;
352
0
    }
353
354
0
    if( task.done != nullptr )
355
0
    {
356
0
      task.done->unlock();
357
0
    }
358
0
    if( task.counter != nullptr )
359
0
    {
360
0
      task.counter->decrement_nothrow();
361
0
    }
362
0
  }
363
0
  catch( ... )
364
0
  {
365
0
    throw TaskException( std::current_exception(), task );
366
0
  }
367
368
0
  task.state = FREE;
369
370
0
  return true;
371
0
}
372
373
bool ThreadPool::bypassTaskQueue( TaskFunc func, void* param, WaitCounter* counter, Barrier* done, CBarrierVec& barriers, TaskFunc readyCheck )
374
0
{
375
0
  CHECKD( numThreads() > 0, "the task queue should only be bypassed, when running single-threaded." );
376
0
  try
377
0
  {
378
    // if singlethreaded, execute all pending tasks
379
0
    bool waiting_tasks = m_nextFillSlot != m_tasks.begin();
380
0
    bool is_ready      = checkTaskReady( 0, barriers, (TaskFunc)readyCheck, param );
381
0
    if( !is_ready && waiting_tasks )
382
0
    {
383
0
      waiting_tasks = processTasksOnMainThread();
384
0
      is_ready      = checkTaskReady( 0, barriers, (TaskFunc)readyCheck, param );
385
0
    }
386
387
    // when no barriers block this task, execute it directly
388
0
    if( is_ready )
389
0
    {
390
0
      if( func( 0, param ) )
391
0
      {
392
0
        if( done != nullptr )
393
0
        {
394
0
          done->unlock();
395
0
        }
396
397
0
        if( waiting_tasks )
398
0
        {
399
0
          processTasksOnMainThread();
400
0
        }
401
0
        return true;
402
0
      }
403
0
    }
404
0
  }
405
0
  catch( ... )
406
0
  {
407
0
    handleTaskException( std::current_exception(), done, counter, nullptr );
408
0
  }
409
410
  // direct execution of the task failed
411
0
  return false;
412
0
}
413
414
void ThreadPool::handleTaskException( const std::exception_ptr e, Barrier* done, WaitCounter* counter, std::atomic<TaskState>* slot_state )
415
0
{
416
0
  if( done != nullptr )
417
0
  {
418
0
    done->setException( e );
419
0
  }
420
0
  if( counter != nullptr )
421
0
  {
422
0
    counter->setException( e );
423
0
    counter->decrement_nothrow();
424
0
  }
425
426
0
  if( slot_state != nullptr )
427
0
  {
428
0
    *slot_state = FREE;
429
0
  }
430
0
}
431
432
#if THREAD_POOL_TASK_NAMES
433
void ThreadPool::printWaitingTasks()
434
{
435
  std::cerr << "Waiting tasks:" << std::endl;
436
  int count = 0;
437
  for( auto& t: m_tasks )
438
  {
439
    if( t.state == WAITING )
440
    {
441
      ++count;
442
      std::cerr << t.taskName << std::endl;
443
    }
444
  }
445
  std::cerr << std::endl << count << " total tasks waiting" << std::endl;
446
}
447
#endif  // THREAD_POOL_TASK_NAMES
448
449
// ---------------------------------------------------------------------------
450
// Chunked Task Queue
451
// ---------------------------------------------------------------------------
452
453
ThreadPool::ChunkedTaskQueue::~ChunkedTaskQueue()
454
659
{
455
659
  Chunk* next = m_firstChunk.m_next;
456
659
  while( next )
457
0
  {
458
0
    Chunk* curr = next;
459
0
    next = curr->m_next;
460
0
    delete curr;
461
0
  }
462
659
}
463
464
ThreadPool::ChunkedTaskQueue::Iterator ThreadPool::ChunkedTaskQueue::grow()
465
0
{
466
0
  std::lock_guard<std::mutex> l( m_resizeMutex );   // prevent concurrent growth of the queue. Read access while growing is no problem
467
468
0
  m_lastChunk->m_next = new Chunk( &m_firstChunk );
469
0
  m_lastChunk         = m_lastChunk->m_next;
470
471
0
  return Iterator{ &m_lastChunk->m_slots.front(), m_lastChunk };
472
0
}
473
474
ThreadPool::ChunkedTaskQueue::Iterator& ThreadPool::ChunkedTaskQueue::Iterator::operator++()
475
0
{
476
0
  CHECKD( m_slot == nullptr, "incrementing invalid iterator" );
477
0
  CHECKD( m_chunk == nullptr, "incrementing invalid iterator" );
478
479
0
  if( m_slot != &m_chunk->m_slots.back() )
480
0
  {
481
0
    ++m_slot;
482
0
  }
483
0
  else
484
0
  {
485
0
    m_chunk = m_chunk->m_next;
486
0
    if( m_chunk )
487
0
    {
488
0
      m_slot = &m_chunk->m_slots.front();
489
0
    }
490
0
    else
491
0
    {
492
0
      m_slot = nullptr;
493
0
    }
494
0
  }
495
0
  return *this;
496
0
}
497
498
ThreadPool::ChunkedTaskQueue::Iterator& ThreadPool::ChunkedTaskQueue::Iterator::incWrap()
499
30.0M
{
500
30.0M
  CHECKD( m_slot == nullptr, "incrementing invalid iterator" );
501
30.0M
  CHECKD( m_chunk == nullptr, "incrementing invalid iterator" );
502
503
30.0M
  if( m_slot != &m_chunk->m_slots.back() )
504
29.8M
  {
505
29.8M
    ++m_slot;
506
29.8M
  }
507
207k
  else
508
207k
  {
509
207k
    if( m_chunk->m_next )
510
0
    {
511
0
      m_chunk = m_chunk->m_next;
512
0
    }
513
207k
    else
514
207k
    {
515
207k
      m_chunk = &m_chunk->m_firstChunk;
516
207k
    }
517
207k
    m_slot = &m_chunk->m_slots.front();
518
207k
  }
519
30.0M
  return *this;
520
30.0M
}
521
522
void ThreadPool::PoolPause::unpauseIfPaused( std::unique_lock<std::mutex> lockOwnership )
523
1.97k
{
524
1.97k
  CHECKD( lockOwnership.mutex() != &m_allThreadsWaitingMutex, "wrong mutex passed into ThreadPool::PoolPause::unpauseIfPaused()" );
525
1.97k
  CHECKD( !lockOwnership.owns_lock(), "lock passed into ThreadPool::PoolPause::unpauseIfPaused() does not own lock" );
526
  // All threads may be sleeping. If so, wake up.
527
1.97k
  m_allThreadsWaiting = false;
528
1.97k
  m_allThreadsWaitingCV.notify_all();
529
1.97k
}
530
531
template<typename Predicate>
532
bool ThreadPool::PoolPause::pauseIfAllOtherThreadsWaiting( Predicate predicate )
533
30.1k
{
534
30.1k
  if( m_nrThreads == 0 )
535
0
  {
536
0
    return false;
537
0
  }
538
30.1k
  const auto nrWaiting = m_waitingForLockThreads.load( std::memory_order_relaxed );
539
30.1k
  if( nrWaiting < m_nrThreads - 1 )
540
29.5k
  {
541
29.5k
    return false;
542
29.5k
  }
543
544
  // All threads are waiting. This (current) threads is the one which locked `idleLock`. All
545
  // other threads are waiting in the above condition for `idleLock.lock();`.
546
  // The only way how more work for the threads can come in is if addBarrierTask is called
547
  // or if the thread pool is closed or destroyed.
548
593
  std::unique_lock<std::mutex> lock( m_allThreadsWaitingMutex );
549
593
  m_allThreadsWaiting = true;
550
1.18k
  m_allThreadsWaitingCV.wait( lock, [this, &predicate] { return !m_allThreadsWaiting || predicate(); } );
551
593
  return true;
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30.1k
}
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554
}   // namespace vvdec