Synchronized_Value at Priscilla Lake blog

Synchronized_Value. Synchronized is a utility class meant to almost completely replace manual usage of mutexes and condition variables in c++, in the same way that. Int main() { { boost::synchronized_value<<strong>int</strong>> v1; Using a synchronized_value<<strong>t</strong>> ensures that the data has a mutex, and the right mutex is locked when the data is accessed. * * example * void fun(synchronized_value<<strong>vector</strong><<strong>int</strong>>> & v) { * auto&& vec=v.synchronize(); The basic idea is that synchronized_value<<strong>t</strong>> stores a value of typet and a mutex.the apply() function then provides a.

PPT Concurrent Programming PowerPoint Presentation, free download ID4143072
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* * example * void fun(synchronized_value<<strong>vector</strong><<strong>int</strong>>> & v) { * auto&& vec=v.synchronize(); Using a synchronized_value<<strong>t</strong>> ensures that the data has a mutex, and the right mutex is locked when the data is accessed. Int main() { { boost::synchronized_value<<strong>int</strong>> v1; The basic idea is that synchronized_value<<strong>t</strong>> stores a value of typet and a mutex.the apply() function then provides a. Synchronized is a utility class meant to almost completely replace manual usage of mutexes and condition variables in c++, in the same way that.

PPT Concurrent Programming PowerPoint Presentation, free download ID4143072

Synchronized_Value Synchronized is a utility class meant to almost completely replace manual usage of mutexes and condition variables in c++, in the same way that. The basic idea is that synchronized_value<<strong>t</strong>> stores a value of typet and a mutex.the apply() function then provides a. * * example * void fun(synchronized_value<<strong>vector</strong><<strong>int</strong>>> & v) { * auto&& vec=v.synchronize(); Int main() { { boost::synchronized_value<<strong>int</strong>> v1; Synchronized is a utility class meant to almost completely replace manual usage of mutexes and condition variables in c++, in the same way that. Using a synchronized_value<<strong>t</strong>> ensures that the data has a mutex, and the right mutex is locked when the data is accessed.

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