52  for (
size_t i = 0; i < threads; ++i)
 
   53    workers.emplace_back([
this] {
 
   55        std::function<void()> task;
 
   58          std::unique_lock<std::mutex> lock(this->queue_mutex);
 
   60              lock, [
this] { 
return this->stop || !this->tasks.empty(); });
 
   61          if (this->stop && this->tasks.empty())
 
   63          task = std::move(this->tasks.front());
 
 
   74    -> std::future<
typename std::invoke_result_t<F, Args...>> {
 
   75  using return_type = 
typename std::invoke_result_t<F, Args...>;
 
   77  auto task = std::make_shared<std::packaged_task<return_type()>>(
 
   78      std::bind(std::forward<F>(
f), std::forward<Args>(args)...));
 
   80  std::future<return_type> res = task->get_future();
 
   82    std::unique_lock<std::mutex> lock(queue_mutex);
 
   85      throw std::runtime_error(
 
   86          "[ThreadPool::enqueue] Not allowed on stopped ThreadPool");
 
   89    tasks.emplace([task]() { (*task)(); });
 
   91  condition.notify_one();
 
 
auto enqueue(F &&f, Args &&... args) -> std::future< typename std::invoke_result_t< F, Args... > >
Definition threadpool.h:73