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simcall_execution_test returns a bool not a state
[simgrid.git] / src / kernel / activity / ExecImpl.cpp
1 /* Copyright (c) 2007-2019. 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/modelchecker.h"
9 #include "src/mc/mc_replay.hpp"
10 #include "src/surf/HostImpl.hpp"
11 #include "src/surf/cpu_interface.hpp"
12 #include "src/surf/surf_interface.hpp"
13
14 #include "simgrid/s4u/Host.hpp"
15
16 XBT_LOG_EXTERNAL_DEFAULT_CATEGORY(simix_process);
17
18 void simcall_HANDLER_execution_wait(smx_simcall_t simcall, simgrid::kernel::activity::ExecImpl* synchro)
19 {
20   XBT_DEBUG("Wait for execution of synchro %p, state %d", synchro, (int)synchro->state_);
21
22   /* Associate this simcall to the synchro */
23   synchro->simcalls_.push_back(simcall);
24   simcall->issuer->waiting_synchro = synchro;
25
26   /* set surf's synchro */
27   if (MC_is_active() || MC_record_replay_is_active()) {
28     synchro->state_ = SIMIX_DONE;
29     synchro->finish();
30     return;
31   }
32
33   /* If the synchro is already finished then perform the error handling */
34   if (synchro->state_ != SIMIX_RUNNING)
35     synchro->finish();
36 }
37
38 void simcall_HANDLER_execution_test(smx_simcall_t simcall, simgrid::kernel::activity::ExecImpl* synchro)
39 {
40   bool res = (synchro->state_ != SIMIX_WAITING && synchro->state_ != SIMIX_RUNNING);
41   if (res) {
42     synchro->simcalls_.push_back(simcall);
43     synchro->finish();
44   } else {
45     SIMIX_simcall_answer(simcall);
46   }
47   simcall_execution_test__set__result(simcall, res);
48 }
49
50 namespace simgrid {
51 namespace kernel {
52 namespace activity {
53
54 ExecImpl::~ExecImpl()
55 {
56   if (timeout_detector_)
57     timeout_detector_->unref();
58   XBT_DEBUG("Destroy exec %p", this);
59 }
60
61 ExecImpl& ExecImpl::set_host(s4u::Host* host)
62 {
63   if (not hosts_.empty())
64     hosts_.clear();
65   hosts_.push_back(host);
66   return *this;
67 }
68
69 ExecImpl& ExecImpl::set_hosts(const std::vector<s4u::Host*>& hosts)
70 {
71   hosts_ = hosts;
72   return *this;
73 }
74
75 ExecImpl& ExecImpl::set_timeout(double timeout)
76 {
77   if (timeout > 0 && not MC_is_active() && not MC_record_replay_is_active()) {
78     timeout_detector_ = hosts_.front()->pimpl_cpu->sleep(timeout);
79     timeout_detector_->set_activity(this);
80   }
81   return *this;
82 }
83
84 ExecImpl& ExecImpl::set_flops_amount(double flops_amount)
85 {
86   if (not flops_amounts_.empty())
87     flops_amounts_.clear();
88   flops_amounts_.push_back(flops_amount);
89   return *this;
90 }
91
92 ExecImpl& ExecImpl::set_flops_amounts(const std::vector<double>& flops_amounts)
93 {
94   flops_amounts_ = flops_amounts;
95   return *this;
96 }
97
98 ExecImpl& ExecImpl::set_bytes_amounts(const std::vector<double>& bytes_amounts)
99 {
100   bytes_amounts_ = bytes_amounts;
101
102   return *this;
103 }
104
105 ExecImpl* ExecImpl::start()
106 {
107   state_ = SIMIX_RUNNING;
108   if (not MC_is_active() && not MC_record_replay_is_active()) {
109     if (hosts_.size() == 1) {
110       surf_action_ = hosts_.front()->pimpl_cpu->execution_start(flops_amounts_.front());
111       surf_action_->set_priority(priority_);
112       surf_action_->set_category(get_tracing_category());
113
114       if (bound_ > 0)
115         surf_action_->set_bound(bound_);
116     } else {
117       surf_action_ = surf_host_model->execute_parallel(hosts_, flops_amounts_.data(), bytes_amounts_.data(), -1);
118     }
119     surf_action_->set_activity(this);
120   }
121
122   XBT_DEBUG("Create execute synchro %p: %s", this, get_cname());
123   ExecImpl::on_creation(*this);
124   return this;
125 }
126
127 double ExecImpl::get_seq_remaining_ratio()
128 {
129   return (surf_action_ == nullptr) ? 0 : surf_action_->get_remains() / surf_action_->get_cost();
130 }
131
132 double ExecImpl::get_par_remaining_ratio()
133 {
134   // parallel task: their remain is already between 0 and 1
135   return (surf_action_ == nullptr) ? 0 : surf_action_->get_remains();
136 }
137
138 ExecImpl& ExecImpl::set_bound(double bound)
139 {
140   bound_ = bound;
141   return *this;
142 }
143
144 ExecImpl& ExecImpl::set_priority(double priority)
145 {
146   priority_ = priority;
147   return *this;
148 }
149
150 void ExecImpl::post()
151 {
152   if (hosts_.size() == 1 && not hosts_.front()->is_on()) { /* FIXME: handle resource failure for parallel tasks too */
153     /* If the host running the synchro failed, notice it. This way, the asking
154      * process can be killed if it runs on that host itself */
155     state_ = SIMIX_FAILED;
156   } else if (surf_action_ && surf_action_->get_state() == resource::Action::State::FAILED) {
157     /* If the host running the synchro didn't fail, then the synchro was canceled */
158     state_ = SIMIX_CANCELED;
159   } else if (timeout_detector_ && timeout_detector_->get_state() == resource::Action::State::FINISHED) {
160     state_ = SIMIX_TIMEOUT;
161   } else {
162     state_ = SIMIX_DONE;
163   }
164
165   on_completion(*this);
166
167   clean_action();
168
169   if (timeout_detector_) {
170     timeout_detector_->unref();
171     timeout_detector_ = nullptr;
172   }
173
174   /* If there are simcalls associated with the synchro, then answer them */
175   if (not simcalls_.empty())
176     finish();
177 }
178
179 void ExecImpl::finish()
180 {
181   while (not simcalls_.empty()) {
182     smx_simcall_t simcall = simcalls_.front();
183     simcalls_.pop_front();
184     switch (state_) {
185
186       case SIMIX_DONE:
187         /* do nothing, synchro done */
188         XBT_DEBUG("ExecImpl::finish(): execution successful");
189         break;
190
191       case SIMIX_FAILED:
192         XBT_DEBUG("ExecImpl::finish(): host '%s' failed", simcall->issuer->get_host()->get_cname());
193         simcall->issuer->context_->iwannadie = true;
194         if (simcall->issuer->get_host()->is_on())
195           simcall->issuer->exception_ =
196               std::make_exception_ptr(simgrid::HostFailureException(XBT_THROW_POINT, "Host failed"));
197         /* else, the actor will be killed with no possibility to survive */
198         break;
199
200       case SIMIX_CANCELED:
201         XBT_DEBUG("ExecImpl::finish(): execution canceled");
202         simcall->issuer->exception_ =
203             std::make_exception_ptr(simgrid::CancelException(XBT_THROW_POINT, "Execution Canceled"));
204         break;
205
206       case SIMIX_TIMEOUT:
207         XBT_DEBUG("ExecImpl::finish(): execution timeouted");
208         simcall->issuer->exception_ = std::make_exception_ptr(simgrid::TimeoutError(XBT_THROW_POINT, "Timeouted"));
209         break;
210
211       default:
212         xbt_die("Internal error in ExecImpl::finish(): unexpected synchro state %d", static_cast<int>(state_));
213     }
214
215     simcall->issuer->waiting_synchro = nullptr;
216     simcall_execution_wait__set__result(simcall, state_);
217
218     /* Fail the process if the host is down */
219     if (simcall->issuer->get_host()->is_on())
220       SIMIX_simcall_answer(simcall);
221     else
222       simcall->issuer->context_->iwannadie = true;
223   }
224 }
225
226 ActivityImpl* ExecImpl::migrate(s4u::Host* to)
227 {
228   if (not MC_is_active() && not MC_record_replay_is_active()) {
229     resource::Action* old_action = this->surf_action_;
230     resource::Action* new_action = to->pimpl_cpu->execution_start(old_action->get_cost());
231     new_action->set_remains(old_action->get_remains());
232     new_action->set_activity(this);
233     new_action->set_priority(old_action->get_priority());
234
235     // FIXME: the user-defined bound seem to not be kept by LMM, that seem to overwrite it for the multi-core modeling.
236     // I hope that the user did not provide any.
237
238     old_action->set_activity(nullptr);
239     old_action->cancel();
240     old_action->unref();
241     this->surf_action_ = new_action;
242   }
243
244   on_migration(*this, to);
245   return this;
246 }
247
248 /*************
249  * Callbacks *
250  *************/
251 xbt::signal<void(ExecImpl&)> ExecImpl::on_creation;
252 xbt::signal<void(ExecImpl const&)> ExecImpl::on_completion;
253 xbt::signal<void(ExecImpl const&, s4u::Host*)> ExecImpl::on_migration;
254
255 } // namespace activity
256 } // namespace kernel
257 } // namespace simgrid