explicit TaskScheduler(P&& predicate)
: self_reference(this, [](TaskScheduler const*) { }), _now(clock_t::now()), _predicate(std::forward(predicate)) { }
TaskScheduler(TaskScheduler const&) = delete;
TaskScheduler(TaskScheduler&&) = delete;
TaskScheduler& operator= (TaskScheduler const&) = delete;
TaskScheduler& operator= (TaskScheduler&&) = delete;
~TaskScheduler();
/// Sets a validator which is asked if tasks are allowed to be executed.
template
TaskScheduler& SetValidator(P&& predicate)
{
_predicate = std::forward(predicate);
return *this;
}
/// Clears the validator which is asked if tasks are allowed to be executed.
TaskScheduler& ClearValidator();
/// Update the scheduler to the current time.
/// Calls the optional callback on successfully finish.
TaskScheduler& Update(success_t const& callback = nullptr);
/// Update the scheduler with a difftime in ms.
/// Calls the optional callback on successfully finish.
TaskScheduler& Update(size_t milliseconds, success_t const& callback = nullptr);
/// Update the scheduler with a difftime.
/// Calls the optional callback on successfully finish.
TaskScheduler& Update(duration_t difftime, success_t const& callback = nullptr);
/// Schedule an callable function that is executed at the next update tick.
/// Its safe to modify the TaskScheduler from within the callable.
TaskScheduler& Async(std::function callable);
/// Schedule an event with a fixed rate.
/// Never call this from within a task context! Use TaskContext::Schedule instead!
TaskScheduler& Schedule(duration_t time,
task_handler_t task)
{
return this->ScheduleAt(_now, time, std::move(task));
}
/// Schedule an event with a fixed rate.
/// Never call this from within a task context! Use TaskContext::Schedule instead!
TaskScheduler& Schedule(duration_t time,
group_t const group, task_handler_t task)
{
return this->ScheduleAt(_now, time, group, std::move(task));
}
/// Schedule an event with a randomized rate between min and max rate.
/// Never call this from within a task context! Use TaskContext::Schedule instead!
TaskScheduler& Schedule(std::chrono::milliseconds min,
std::chrono::milliseconds max, task_handler_t task)
{
return this->Schedule(::randtime(min, max), std::move(task));
}
/// Schedule an event with a fixed rate.
/// Never call this from within a task context! Use TaskContext::Schedule instead!
TaskScheduler& Schedule(std::chrono::milliseconds min,
std::chrono::milliseconds max, group_t const group,
task_handler_t task)
{
return this->Schedule(::randtime(min, max), group, std::move(task));
}
/// Cancels all tasks.
/// Never call this from within a task context! Use TaskContext::CancelAll instead!
TaskScheduler& CancelAll();
/// Cancel all tasks of a single group.
/// Never call this from within a task context! Use TaskContext::CancelGroup instead!
TaskScheduler& CancelGroup(group_t group);
/// Cancels all groups in the given std::vector.
/// Hint: Use std::initializer_list for this: "{1, 2, 3, 4}"
TaskScheduler& CancelGroupsOf(std::vector const& groups);
/// Delays all tasks with the given duration.
TaskScheduler& DelayAll(duration_t duration);
/// Delays all tasks with a random duration between min and max.
TaskScheduler& DelayAll(std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->DelayAll(::randtime(min, max));
}
/// Delays all tasks of a group with the given duration.
TaskScheduler& DelayGroup(group_t const group, duration_t duration);
/// Delays all tasks of a group with a random duration between min and max.
TaskScheduler& DelayGroup(group_t const group,
std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->DelayGroup(group, ::randtime(min, max));
}
/// Reschedule all tasks with a given duration.
TaskScheduler& RescheduleAll(duration_t duration);
/// Reschedule all tasks with a random duration between min and max.
TaskScheduler& RescheduleAll(std::chrono::milliseconds min, std::chrono::milliseconds max)
{
return this->RescheduleAll(::randtime(min, max));
}
/// Reschedule all tasks of a group with the given duration.
TaskScheduler& RescheduleGroup(group_t const group, duration_t duration);
/// Reschedule all tasks of a group with a random duration between min and max.
TaskScheduler& RescheduleGroup(group_t const group,
std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->RescheduleGroup(group, ::randtime(min, max));
}
private:
/// Insert a new task to the enqueued tasks.
TaskScheduler& InsertTask(TaskContainer task);
TaskScheduler& ScheduleAt(timepoint_t end,
duration_t time, task_handler_t task);
/// Schedule an event with a fixed rate.
/// Never call this from within a task context! Use TaskContext::schedule instead!
TaskScheduler& ScheduleAt(timepoint_t end,
duration_t time,
group_t const group, task_handler_t task);
/// Dispatch remaining tasks
void Dispatch(success_t const& callback);
};
class TC_COMMON_API TaskContext
{
friend class TaskScheduler;
/// Associated task
TaskScheduler::TaskContainer _task;
/// Owner
std::weak_ptr _owner;
/// Marks the task as consumed
std::shared_ptr _consumed;
/// Dispatches an action safe on the TaskScheduler
TaskContext& Dispatch(std::function const& apply);
public:
// Empty constructor
TaskContext()
: _task(), _owner(), _consumed(std::make_shared(true)) { }
// Construct from task and owner
explicit TaskContext(TaskScheduler::TaskContainer&& task, std::weak_ptr&& owner)
: _task(std::move(task)), _owner(std::move(owner)), _consumed(std::make_shared(false)) { }
// Copy construct
TaskContext(TaskContext const& right) = default;
// Move construct
TaskContext(TaskContext&& right) noexcept = default;
// Copy assign
TaskContext& operator=(TaskContext const& right) = default;
// Move assign
TaskContext& operator=(TaskContext&& right) noexcept = default;
~TaskContext() = default;
/// Returns true if the owner was deallocated and this context has expired.
bool IsExpired() const;
/// Returns true if the event is in the given group
bool IsInGroup(TaskScheduler::group_t const group) const;
/// Sets the event in the given group
TaskContext& SetGroup(TaskScheduler::group_t const group);
/// Removes the group from the event
TaskContext& ClearGroup();
/// Returns the repeat counter which increases every time the task is repeated.
TaskScheduler::repeated_t GetRepeatCounter() const;
/// Repeats the event and sets a new duration.
/// std::chrono::seconds(5) for example.
/// This will consume the task context, its not possible to repeat the task again
/// from the same task context!
TaskContext& Repeat(TaskScheduler::duration_t duration);
/// Repeats the event with the same duration.
/// This will consume the task context, its not possible to repeat the task again
/// from the same task context!
TaskContext& Repeat()
{
return Repeat(_task->_duration);
}
/// Repeats the event and set a new duration that is randomized between min and max.
/// std::chrono::seconds(5) for example.
/// This will consume the task context, its not possible to repeat the task again
/// from the same task context!
TaskContext& Repeat(std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->Repeat(::randtime(min, max));
}
/// Schedule a callable function that is executed at the next update tick from within the context.
/// Its safe to modify the TaskScheduler from within the callable.
TaskContext& Async(std::function const& callable);
/// Schedule an event with a fixed rate from within the context.
/// Its possible that the new event is executed immediately!
/// Use TaskScheduler::Async to create a task
/// which will be called at the next update tick.
TaskContext& Schedule(TaskScheduler::duration_t time,
TaskScheduler::task_handler_t task);
/// Schedule an event with a fixed rate from within the context.
/// Its possible that the new event is executed immediately!
/// Use TaskScheduler::Async to create a task
/// which will be called at the next update tick.
TaskContext& Schedule(TaskScheduler::duration_t time,
TaskScheduler::group_t const group, TaskScheduler::task_handler_t task);
/// Schedule an event with a randomized rate between min and max rate from within the context.
/// Its possible that the new event is executed immediately!
/// Use TaskScheduler::Async to create a task
/// which will be called at the next update tick.
TaskContext& Schedule(std::chrono::milliseconds min,
std::chrono::milliseconds max, TaskScheduler::task_handler_t task)
{
return this->Schedule(::randtime(min, max), std::move(task));
}
/// Schedule an event with a randomized rate between min and max rate from within the context.
/// Its possible that the new event is executed immediately!
/// Use TaskScheduler::Async to create a task
/// which will be called at the next update tick.
TaskContext& Schedule(std::chrono::milliseconds min,
std::chrono::milliseconds max, TaskScheduler::group_t const group,
TaskScheduler::task_handler_t task)
{
return this->Schedule(::randtime(min, max), group, std::move(task));
}
/// Cancels all tasks from within the context.
TaskContext& CancelAll();
/// Cancel all tasks of a single group from within the context.
TaskContext& CancelGroup(TaskScheduler::group_t const group);
/// Cancels all groups in the given std::vector from within the context.
/// Hint: Use std::initializer_list for this: "{1, 2, 3, 4}"
TaskContext& CancelGroupsOf(std::vector const& groups);
/// Delays all tasks with the given duration from within the context.
TaskContext& DelayAll(TaskScheduler::duration_t duration);
/// Delays all tasks with a random duration between min and max from within the context.
TaskContext& DelayAll(std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->DelayAll(::randtime(min, max));
}
/// Delays all tasks of a group with the given duration from within the context.
TaskContext& DelayGroup(TaskScheduler::group_t const group, TaskScheduler::duration_t duration);
/// Delays all tasks of a group with a random duration between min and max from within the context.
TaskContext& DelayGroup(TaskScheduler::group_t const group,
std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->DelayGroup(group, ::randtime(min, max));
}
/// Reschedule all tasks with the given duration.
TaskContext& RescheduleAll(TaskScheduler::duration_t duration);
/// Reschedule all tasks with a random duration between min and max.
TaskContext& RescheduleAll(std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->RescheduleAll(::randtime(min, max));
}
/// Reschedule all tasks of a group with the given duration.
TaskContext& RescheduleGroup(TaskScheduler::group_t const group, TaskScheduler::duration_t duration);
/// Reschedule all tasks of a group with a random duration between min and max.
TaskContext& RescheduleGroup(TaskScheduler::group_t const group,
std::chrono::milliseconds min,
std::chrono::milliseconds max)
{
return this->RescheduleGroup(group, ::randtime(min, max));
}
private:
/// Asserts if the task was consumed already.
void AssertOnConsumed() const;
/// Invokes the associated hook of the task.
void Invoke();
};
#endif /// TRINITYCORE_TASK_SCHEDULER_H