XBT_LOG_NEW_DEFAULT_SUBCATEGORY(s4u_exec, s4u_activity, "S4U asynchronous executions");
-namespace simgrid {
-namespace s4u {
+namespace simgrid::s4u {
xbt::signal<void(Exec const&)> Exec::on_start;
Exec::Exec(kernel::activity::ExecImplPtr pimpl)
Exec* Exec::start()
{
- kernel::actor::simcall([this] {
+ kernel::actor::simcall_answered([this] {
(*boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_))
.set_name(get_name())
.set_tracing_category(get_tracing_category())
{
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the bound of an exec after its start");
- kernel::actor::simcall(
+ kernel::actor::simcall_answered(
[this, bound] { boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_bound(bound); });
return this;
}
{
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the priority of an exec after its start");
- kernel::actor::simcall([this, priority] {
+ kernel::actor::simcall_answered([this, priority] {
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_sharing_penalty(1. / priority);
});
return this;
ExecPtr Exec::update_priority(double priority)
{
- kernel::actor::simcall([this, priority] {
+ kernel::actor::simcall_answered([this, priority] {
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->update_sharing_penalty(1. / priority);
});
return this;
{
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the flop_amount of an exec after its start");
- kernel::actor::simcall([this, flops_amount] {
+ kernel::actor::simcall_answered([this, flops_amount] {
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_flops_amount(flops_amount);
});
Activity::set_remaining(flops_amount);
{
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the flops_amounts of an exec after its start");
- kernel::actor::simcall([this, flops_amounts] {
+ kernel::actor::simcall_answered([this, flops_amounts] {
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_flops_amounts(flops_amounts);
});
parallel_ = true;
{
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the bytes_amounts of an exec after its start");
- kernel::actor::simcall([this, bytes_amounts] {
+ kernel::actor::simcall_answered([this, bytes_amounts] {
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_bytes_amounts(bytes_amounts);
});
parallel_ = true;
return this;
}
+ExecPtr Exec::set_thread_count(int thread_count)
+{
+ xbt_assert(state_ == State::INITED || state_ == State::STARTING,
+ "Cannot change the bytes_amounts of an exec after its start");
+ kernel::actor::simcall_answered([this, thread_count] {
+ boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_thread_count(thread_count);
+ });
+ return this;
+}
+
/** @brief Retrieve the host on which this activity takes place.
* If it runs on more than one host, only the first host is returned.
*/
if (state_ == State::STARTED)
boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->migrate(host);
- kernel::actor::simcall(
+ kernel::actor::simcall_answered(
[this, host] { boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_host(host); });
if (state_ == State::STARTING)
xbt_assert(state_ == State::INITED || state_ == State::STARTING,
"Cannot change the hosts of an exec once it's done (state: %s)", to_c_str(state_));
- kernel::actor::simcall(
+ kernel::actor::simcall_answered(
[this, hosts] { boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->set_hosts(hosts); });
parallel_ = true;
XBT_WARN("Calling get_remaining() on a parallel execution is not allowed. Call get_remaining_ratio() instead.");
return get_remaining_ratio();
} else
- return kernel::actor::simcall(
+ return kernel::actor::simcall_answered(
[this]() { return boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->get_remaining(); });
}
double Exec::get_remaining_ratio() const
{
if (is_parallel())
- return kernel::actor::simcall(
+ return kernel::actor::simcall_answered(
[this]() { return boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->get_par_remaining_ratio(); });
else
- return kernel::actor::simcall(
+ return kernel::actor::simcall_answered(
[this]() { return boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->get_seq_remaining_ratio(); });
}
{
return not boost::static_pointer_cast<kernel::activity::ExecImpl>(pimpl_)->get_hosts().empty();
}
-} // namespace s4u
-} // namespace simgrid
+} // namespace simgrid::s4u
/* **************************** Public C interface *************************** */
void sg_exec_set_bound(sg_exec_t exec, double bound)