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[simgrid.git] / src / kernel / activity / ExecImpl.cpp
1 /* Copyright (c) 2007-2021. The SimGrid Team. All rights reserved.          */
2
3 /* This program is free software; you can redistribute it and/or modify it
4  * under the terms of the license (GNU LGPL) which comes with this package. */
5
6 #include "src/kernel/activity/ExecImpl.hpp"
7 #include "simgrid/Exception.hpp"
8 #include "simgrid/kernel/routing/NetPoint.hpp"
9 #include "simgrid/modelchecker.h"
10 #include "simgrid/s4u/Exec.hpp"
11 #include "src/kernel/actor/SimcallObserver.hpp"
12 #include "src/mc/mc_replay.hpp"
13 #include "src/surf/HostImpl.hpp"
14 #include "src/surf/cpu_interface.hpp"
15 #include "src/surf/surf_interface.hpp"
16
17 #include "simgrid/s4u/Host.hpp"
18
19 XBT_LOG_EXTERNAL_DEFAULT_CATEGORY(simix_process);
20
21 namespace simgrid {
22 namespace kernel {
23 namespace activity {
24
25 ExecImpl::ExecImpl()
26 {
27   piface_                = new s4u::Exec(this);
28   actor::ActorImpl* self = actor::ActorImpl::self();
29   if (self) {
30     actor_ = self;
31     self->activities_.emplace_back(this);
32   }
33 }
34
35 ExecImpl& ExecImpl::set_host(s4u::Host* host)
36 {
37   hosts_.assign(1, host);
38   return *this;
39 }
40
41 ExecImpl& ExecImpl::set_hosts(const std::vector<s4u::Host*>& hosts)
42 {
43   hosts_ = hosts;
44   return *this;
45 }
46
47 ExecImpl& ExecImpl::set_timeout(double timeout)
48 {
49   if (timeout >= 0 && not MC_is_active() && not MC_record_replay_is_active()) {
50     timeout_detector_.reset(hosts_.front()->pimpl_cpu->sleep(timeout));
51     timeout_detector_->set_activity(this);
52   }
53   return *this;
54 }
55
56 ExecImpl& ExecImpl::set_flops_amount(double flops_amount)
57 {
58   flops_amounts_.assign(1, flops_amount);
59   return *this;
60 }
61
62 ExecImpl& ExecImpl::set_flops_amounts(const std::vector<double>& flops_amounts)
63 {
64   flops_amounts_ = flops_amounts;
65   return *this;
66 }
67
68 ExecImpl& ExecImpl::set_bytes_amounts(const std::vector<double>& bytes_amounts)
69 {
70   bytes_amounts_ = bytes_amounts;
71
72   return *this;
73 }
74
75 ExecImpl* ExecImpl::start()
76 {
77   state_ = State::RUNNING;
78   if (not MC_is_active() && not MC_record_replay_is_active()) {
79     if (hosts_.size() == 1) {
80       surf_action_ = hosts_.front()->pimpl_cpu->execution_start(flops_amounts_.front());
81       surf_action_->set_sharing_penalty(sharing_penalty_);
82       surf_action_->set_category(get_tracing_category());
83
84       if (bound_ > 0) {
85         surf_action_->set_bound(bound_);
86         surf_action_->set_user_bound(bound_);
87       }
88     } else {
89       // FIXME[donassolo]: verify if all hosts belongs to the same netZone?
90       auto host_model = hosts_.front()->get_netpoint()->get_englobing_zone()->get_host_model();
91       surf_action_    = host_model->execute_parallel(hosts_, flops_amounts_.data(), bytes_amounts_.data(), -1);
92     }
93     surf_action_->set_activity(this);
94   }
95
96   XBT_DEBUG("Create execute synchro %p: %s", this, get_cname());
97   return this;
98 }
99
100 double ExecImpl::get_seq_remaining_ratio()
101 {
102   return (surf_action_ == nullptr) ? 0 : surf_action_->get_remains() / surf_action_->get_cost();
103 }
104
105 double ExecImpl::get_par_remaining_ratio()
106 {
107   // parallel task: their remain is already between 0 and 1
108   return (surf_action_ == nullptr) ? 0 : surf_action_->get_remains();
109 }
110
111 ExecImpl& ExecImpl::set_bound(double bound)
112 {
113   bound_ = bound;
114   return *this;
115 }
116
117 ExecImpl& ExecImpl::set_sharing_penalty(double sharing_penalty)
118 {
119   sharing_penalty_ = sharing_penalty;
120   return *this;
121 }
122
123 void ExecImpl::post()
124 {
125   xbt_assert(surf_action_ != nullptr);
126   if (std::any_of(hosts_.begin(), hosts_.end(), [](const s4u::Host* host) { return not host->is_on(); })) {
127     /* If one of the hosts running the synchro failed, notice it. This way, the asking
128      * process can be killed if it runs on that host itself */
129     state_ = State::FAILED;
130   } else if (surf_action_->get_state() == resource::Action::State::FAILED) {
131     /* If all the hosts are running the synchro didn't fail, then the synchro was canceled */
132     state_ = State::CANCELED;
133   } else if (timeout_detector_ && timeout_detector_->get_state() == resource::Action::State::FINISHED) {
134     if (surf_action_->get_remains() > 0.0) {
135       surf_action_->set_state(resource::Action::State::FAILED);
136       state_ = State::TIMEOUT;
137     } else {
138       state_ = State::DONE;
139     }
140   } else {
141     state_ = State::DONE;
142   }
143
144   get_iface()->set_finish_time(surf_action_->get_finish_time());
145
146   clean_action();
147   timeout_detector_.reset();
148   if (actor_) {
149     actor_->activities_.remove(this);
150     actor_ = nullptr;
151   }
152   /* Answer all simcalls associated with the synchro */
153   finish();
154 }
155
156 void ExecImpl::finish()
157 {
158   XBT_DEBUG("ExecImpl::finish() in state %s", to_c_str(state_));
159   while (not simcalls_.empty()) {
160     smx_simcall_t simcall = simcalls_.front();
161     simcalls_.pop_front();
162
163     /* If a waitany simcall is waiting for this synchro to finish, then remove it from the other synchros in the waitany
164      * list. Afterwards, get the position of the actual synchro in the waitany list and return it as the result of the
165      * simcall */
166
167     if (simcall->call_ == simix::Simcall::NONE) // FIXME: maybe a better way to handle this case
168       continue;                                 // if process handling comm is killed
169     if (auto* observer =
170             dynamic_cast<kernel::actor::ExecutionWaitanySimcall*>(simcall->observer_)) { // simcall is a wait_any?
171       const auto& execs = observer->get_execs();
172
173       for (auto* exec : execs) {
174         exec->unregister_simcall(simcall);
175
176         if (simcall->timeout_cb_) {
177           simcall->timeout_cb_->remove();
178           simcall->timeout_cb_ = nullptr;
179         }
180       }
181
182       if (not MC_is_active() && not MC_record_replay_is_active()) {
183         auto element = std::find(execs.begin(), execs.end(), this);
184         int rank     = element != execs.end() ? static_cast<int>(std::distance(execs.begin(), element)) : -1;
185         observer->set_result(rank);
186       }
187     }
188     switch (state_) {
189       case State::FAILED:
190         simcall->issuer_->context_->set_wannadie();
191         if (simcall->issuer_->get_host()->is_on())
192           simcall->issuer_->exception_ =
193               std::make_exception_ptr(simgrid::HostFailureException(XBT_THROW_POINT, "Host failed"));
194         /* else, the actor will be killed with no possibility to survive */
195         break;
196
197       case State::CANCELED:
198         simcall->issuer_->exception_ =
199             std::make_exception_ptr(simgrid::CancelException(XBT_THROW_POINT, "Execution Canceled"));
200         break;
201
202       case State::TIMEOUT:
203         simcall->issuer_->exception_ = std::make_exception_ptr(simgrid::TimeoutException(XBT_THROW_POINT, "Timeouted"));
204         break;
205
206       default:
207         xbt_assert(state_ == State::DONE, "Internal error in ExecImpl::finish(): unexpected synchro state %s",
208                    to_c_str(state_));
209     }
210
211     simcall->issuer_->waiting_synchro_ = nullptr;
212     /* Fail the process if the host is down */
213     if (simcall->issuer_->get_host()->is_on())
214       simcall->issuer_->simcall_answer();
215     else
216       simcall->issuer_->context_->set_wannadie();
217   }
218 }
219
220 ActivityImpl* ExecImpl::migrate(s4u::Host* to)
221 {
222   if (not MC_is_active() && not MC_record_replay_is_active()) {
223     resource::Action* old_action = this->surf_action_;
224     resource::Action* new_action = to->pimpl_cpu->execution_start(old_action->get_cost());
225     new_action->set_remains(old_action->get_remains());
226     new_action->set_activity(this);
227     new_action->set_sharing_penalty(old_action->get_sharing_penalty());
228     new_action->set_user_bound(old_action->get_user_bound());
229
230     old_action->set_activity(nullptr);
231     old_action->cancel();
232     old_action->unref();
233     this->surf_action_ = new_action;
234   }
235
236   on_migration(*this, to);
237   return this;
238 }
239
240 void ExecImpl::wait_any_for(actor::ActorImpl* issuer, const std::vector<ExecImpl*>& execs, double timeout)
241 {
242   if (timeout < 0.0) {
243     issuer->simcall_.timeout_cb_ = nullptr;
244   } else {
245     issuer->simcall_.timeout_cb_ = simgrid::simix::Timer::set(SIMIX_get_clock() + timeout, [issuer, &execs]() {
246       issuer->simcall_.timeout_cb_ = nullptr;
247       for (auto* exec : execs)
248         exec->unregister_simcall(&issuer->simcall_);
249       // default result (-1) is set in actor::ExecutionWaitanySimcall
250       issuer->simcall_answer();
251     });
252   }
253
254   for (auto* exec : execs) {
255     /* associate this simcall to the the synchro */
256     exec->simcalls_.push_back(&issuer->simcall_);
257
258     /* see if the synchro is already finished */
259     if (exec->state_ != simgrid::kernel::activity::State::WAITING &&
260         exec->state_ != simgrid::kernel::activity::State::RUNNING) {
261       exec->finish();
262       break;
263     }
264   }
265 }
266
267 /*************
268  * Callbacks *
269  *************/
270 xbt::signal<void(ExecImpl const&, s4u::Host*)> ExecImpl::on_migration;
271
272 } // namespace activity
273 } // namespace kernel
274 } // namespace simgrid