Logo AND Algorithmique Numérique Distribuée

Public GIT Repository
Reindent.
[simgrid.git] / src / simix / popping_bodies.cpp
1 /**********************************************************************/
2 /* File generated by src/simix/simcalls.py from src/simix/simcalls.in */
3 /*                                                                    */
4 /*                    DO NOT EVER CHANGE THIS FILE                    */
5 /*                                                                    */
6 /* change simcalls specification in src/simix/simcalls.in             */
7 /* Copyright (c) 2014-2017. The SimGrid Team. All rights reserved.    */
8 /**********************************************************************/
9
10 /*
11  * Note that the name comes from http://en.wikipedia.org/wiki/Popping
12  * Indeed, the control flow is doing a strange dance in there.
13  *
14  * That's not about http://en.wikipedia.org/wiki/Poop, despite the odor :)
15  */
16
17 #include "smx_private.hpp"
18 #include "src/mc/mc_forward.hpp"
19 #include "xbt/ex.h"
20 #include <functional>
21 #include <simgrid/simix.hpp>
22 /** @cond */ // Please Doxygen, don't look at this
23
24 template<class R, class... T>
25 inline static R simcall(e_smx_simcall_t call, T const&... t)
26 {
27   smx_actor_t self = SIMIX_process_self();
28   simgrid::simix::marshal(&self->simcall, call, t...);
29   if (self != simix_global->maestro_process) {
30     XBT_DEBUG("Yield process '%s' on simcall %s (%d)", self->name.c_str(),
31               SIMIX_simcall_name(self->simcall.call), (int)self->simcall.call);
32     SIMIX_process_yield(self);
33   } else {
34     SIMIX_simcall_handle(&self->simcall, 0);
35   }
36   return simgrid::simix::unmarshal<R>(self->simcall.result);
37 }
38
39 inline static void simcall_BODY_process_killall(int reset_pid)
40 {
41   if (0) /* Go to that function to follow the code flow through the simcall barrier */
42     simcall_HANDLER_process_killall(&SIMIX_process_self()->simcall, reset_pid);
43   return simcall<void, int>(SIMCALL_PROCESS_KILLALL, reset_pid);
44 }
45
46 inline static void simcall_BODY_process_cleanup(smx_actor_t process)
47 {
48   if (0) /* Go to that function to follow the code flow through the simcall barrier */
49     SIMIX_process_cleanup(process);
50   return simcall<void, smx_actor_t>(SIMCALL_PROCESS_CLEANUP, process);
51 }
52
53 inline static void simcall_BODY_process_suspend(smx_actor_t process)
54 {
55   if (0) /* Go to that function to follow the code flow through the simcall barrier */
56     simcall_HANDLER_process_suspend(&SIMIX_process_self()->simcall, process);
57   return simcall<void, smx_actor_t>(SIMCALL_PROCESS_SUSPEND, process);
58 }
59
60 inline static int simcall_BODY_process_join(smx_actor_t process, double timeout)
61 {
62   if (0) /* Go to that function to follow the code flow through the simcall barrier */
63     simcall_HANDLER_process_join(&SIMIX_process_self()->simcall, process, timeout);
64   return simcall<int, smx_actor_t, double>(SIMCALL_PROCESS_JOIN, process, timeout);
65 }
66
67 inline static int simcall_BODY_process_sleep(double duration)
68 {
69   if (0) /* Go to that function to follow the code flow through the simcall barrier */
70     simcall_HANDLER_process_sleep(&SIMIX_process_self()->simcall, duration);
71   return simcall<int, double>(SIMCALL_PROCESS_SLEEP, duration);
72 }
73
74 inline static boost::intrusive_ptr<simgrid::kernel::activity::ExecImpl> simcall_BODY_execution_start(const char* name, double flops_amount, double priority, double bound)
75 {
76   if (0) /* Go to that function to follow the code flow through the simcall barrier */
77     simcall_HANDLER_execution_start(&SIMIX_process_self()->simcall, name, flops_amount, priority, bound);
78   return simcall<boost::intrusive_ptr<simgrid::kernel::activity::ExecImpl>, const char*, double, double, double>(SIMCALL_EXECUTION_START, name, flops_amount, priority, bound);
79 }
80
81 inline static boost::intrusive_ptr<simgrid::kernel::activity::ExecImpl> simcall_BODY_execution_parallel_start(const char* name, int host_nb, sg_host_t* host_list, double* flops_amount, double* bytes_amount, double rate, double timeout)
82 {
83   if (0) /* Go to that function to follow the code flow through the simcall barrier */
84     SIMIX_execution_parallel_start(name, host_nb, host_list, flops_amount, bytes_amount, rate, timeout);
85   return simcall<boost::intrusive_ptr<simgrid::kernel::activity::ExecImpl>, const char*, int, sg_host_t*, double*, double*, double, double>(SIMCALL_EXECUTION_PARALLEL_START, name, host_nb, host_list, flops_amount, bytes_amount, rate, timeout);
86 }
87
88 inline static int simcall_BODY_execution_wait(boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> execution)
89 {
90   if (0) /* Go to that function to follow the code flow through the simcall barrier */
91     simcall_HANDLER_execution_wait(&SIMIX_process_self()->simcall, execution);
92   return simcall<int, boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>>(SIMCALL_EXECUTION_WAIT, execution);
93 }
94
95 inline static void simcall_BODY_process_on_exit(smx_actor_t process, int_f_pvoid_pvoid_t fun, void* data)
96 {
97   if (0) /* Go to that function to follow the code flow through the simcall barrier */
98     SIMIX_process_on_exit(process, fun, data);
99   return simcall<void, smx_actor_t, int_f_pvoid_pvoid_t, void*>(SIMCALL_PROCESS_ON_EXIT, process, fun, data);
100 }
101
102 inline static boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> simcall_BODY_comm_iprobe(smx_mailbox_t mbox, int type, simix_match_func_t match_fun, void* data)
103 {
104   if (0) /* Go to that function to follow the code flow through the simcall barrier */
105     simcall_HANDLER_comm_iprobe(&SIMIX_process_self()->simcall, mbox, type, match_fun, data);
106   return simcall<boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>, smx_mailbox_t, int, simix_match_func_t, void*>(SIMCALL_COMM_IPROBE, mbox, type, match_fun, data);
107 }
108
109 inline static void simcall_BODY_comm_send(smx_actor_t sender, smx_mailbox_t mbox, double task_size, double rate, void* src_buff, size_t src_buff_size, simix_match_func_t match_fun, simix_copy_data_func_t copy_data_fun, void* data, double timeout)
110 {
111   if (0) /* Go to that function to follow the code flow through the simcall barrier */
112     simcall_HANDLER_comm_send(&SIMIX_process_self()->simcall, sender, mbox, task_size, rate, src_buff, src_buff_size, match_fun, copy_data_fun, data, timeout);
113   return simcall<void, smx_actor_t, smx_mailbox_t, double, double, void*, size_t, simix_match_func_t, simix_copy_data_func_t, void*, double>(SIMCALL_COMM_SEND, sender, mbox, task_size, rate, src_buff, src_buff_size, match_fun, copy_data_fun, data, timeout);
114 }
115
116 inline static boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> simcall_BODY_comm_isend(smx_actor_t sender, smx_mailbox_t mbox, double task_size, double rate, void* src_buff, size_t src_buff_size, simix_match_func_t match_fun, simix_clean_func_t clean_fun, simix_copy_data_func_t copy_data_fun, void* data, int detached)
117 {
118   if (0) /* Go to that function to follow the code flow through the simcall barrier */
119     simcall_HANDLER_comm_isend(&SIMIX_process_self()->simcall, sender, mbox, task_size, rate, src_buff, src_buff_size, match_fun, clean_fun, copy_data_fun, data, detached);
120   return simcall<boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>, smx_actor_t, smx_mailbox_t, double, double, void*, size_t, simix_match_func_t, simix_clean_func_t, simix_copy_data_func_t, void*, int>(SIMCALL_COMM_ISEND, sender, mbox, task_size, rate, src_buff, src_buff_size, match_fun, clean_fun, copy_data_fun, data, detached);
121 }
122
123 inline static void simcall_BODY_comm_recv(smx_actor_t receiver, smx_mailbox_t mbox, void* dst_buff, size_t* dst_buff_size, simix_match_func_t match_fun, simix_copy_data_func_t copy_data_fun, void* data, double timeout, double rate)
124 {
125   if (0) /* Go to that function to follow the code flow through the simcall barrier */
126     simcall_HANDLER_comm_recv(&SIMIX_process_self()->simcall, receiver, mbox, dst_buff, dst_buff_size, match_fun, copy_data_fun, data, timeout, rate);
127   return simcall<void, smx_actor_t, smx_mailbox_t, void*, size_t*, simix_match_func_t, simix_copy_data_func_t, void*, double, double>(SIMCALL_COMM_RECV, receiver, mbox, dst_buff, dst_buff_size, match_fun, copy_data_fun, data, timeout, rate);
128 }
129
130 inline static boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> simcall_BODY_comm_irecv(smx_actor_t receiver, smx_mailbox_t mbox, void* dst_buff, size_t* dst_buff_size, simix_match_func_t match_fun, simix_copy_data_func_t copy_data_fun, void* data, double rate)
131 {
132   if (0) /* Go to that function to follow the code flow through the simcall barrier */
133     simcall_HANDLER_comm_irecv(&SIMIX_process_self()->simcall, receiver, mbox, dst_buff, dst_buff_size, match_fun, copy_data_fun, data, rate);
134   return simcall<boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>, smx_actor_t, smx_mailbox_t, void*, size_t*, simix_match_func_t, simix_copy_data_func_t, void*, double>(SIMCALL_COMM_IRECV, receiver, mbox, dst_buff, dst_buff_size, match_fun, copy_data_fun, data, rate);
135 }
136
137 inline static int simcall_BODY_comm_waitany(xbt_dynar_t comms, double timeout)
138 {
139   if (0) /* Go to that function to follow the code flow through the simcall barrier */
140     simcall_HANDLER_comm_waitany(&SIMIX_process_self()->simcall, comms, timeout);
141   return simcall<int, xbt_dynar_t, double>(SIMCALL_COMM_WAITANY, comms, timeout);
142 }
143
144 inline static void simcall_BODY_comm_wait(boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> comm, double timeout)
145 {
146   if (0) /* Go to that function to follow the code flow through the simcall barrier */
147     simcall_HANDLER_comm_wait(&SIMIX_process_self()->simcall, comm, timeout);
148   return simcall<void, boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>, double>(SIMCALL_COMM_WAIT, comm, timeout);
149 }
150
151 inline static int simcall_BODY_comm_test(boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> comm)
152 {
153   if (0) /* Go to that function to follow the code flow through the simcall barrier */
154     simcall_HANDLER_comm_test(&SIMIX_process_self()->simcall, comm);
155   return simcall<int, boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>>(SIMCALL_COMM_TEST, comm);
156 }
157
158 inline static int simcall_BODY_comm_testany(boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>* comms, size_t count)
159 {
160   if (0) /* Go to that function to follow the code flow through the simcall barrier */
161     simcall_HANDLER_comm_testany(&SIMIX_process_self()->simcall, comms, count);
162   return simcall<int, boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>*, size_t>(SIMCALL_COMM_TESTANY, comms, count);
163 }
164
165 inline static void simcall_BODY_mutex_lock(smx_mutex_t mutex)
166 {
167   if (0) /* Go to that function to follow the code flow through the simcall barrier */
168     simcall_HANDLER_mutex_lock(&SIMIX_process_self()->simcall, mutex);
169   return simcall<void, smx_mutex_t>(SIMCALL_MUTEX_LOCK, mutex);
170 }
171
172 inline static int simcall_BODY_mutex_trylock(smx_mutex_t mutex)
173 {
174   if (0) /* Go to that function to follow the code flow through the simcall barrier */
175     simcall_HANDLER_mutex_trylock(&SIMIX_process_self()->simcall, mutex);
176   return simcall<int, smx_mutex_t>(SIMCALL_MUTEX_TRYLOCK, mutex);
177 }
178
179 inline static void simcall_BODY_mutex_unlock(smx_mutex_t mutex)
180 {
181   if (0) /* Go to that function to follow the code flow through the simcall barrier */
182     simcall_HANDLER_mutex_unlock(&SIMIX_process_self()->simcall, mutex);
183   return simcall<void, smx_mutex_t>(SIMCALL_MUTEX_UNLOCK, mutex);
184 }
185
186 inline static smx_cond_t simcall_BODY_cond_init()
187 {
188   if (0) /* Go to that function to follow the code flow through the simcall barrier */
189     SIMIX_cond_init();
190   return simcall<smx_cond_t>(SIMCALL_COND_INIT);
191 }
192
193 inline static void simcall_BODY_cond_signal(smx_cond_t cond)
194 {
195   if (0) /* Go to that function to follow the code flow through the simcall barrier */
196     SIMIX_cond_signal(cond);
197   return simcall<void, smx_cond_t>(SIMCALL_COND_SIGNAL, cond);
198 }
199
200 inline static void simcall_BODY_cond_wait(smx_cond_t cond, smx_mutex_t mutex)
201 {
202   if (0) /* Go to that function to follow the code flow through the simcall barrier */
203     simcall_HANDLER_cond_wait(&SIMIX_process_self()->simcall, cond, mutex);
204   return simcall<void, smx_cond_t, smx_mutex_t>(SIMCALL_COND_WAIT, cond, mutex);
205 }
206
207 inline static void simcall_BODY_cond_wait_timeout(smx_cond_t cond, smx_mutex_t mutex, double timeout)
208 {
209   if (0) /* Go to that function to follow the code flow through the simcall barrier */
210     simcall_HANDLER_cond_wait_timeout(&SIMIX_process_self()->simcall, cond, mutex, timeout);
211   return simcall<void, smx_cond_t, smx_mutex_t, double>(SIMCALL_COND_WAIT_TIMEOUT, cond, mutex, timeout);
212 }
213
214 inline static void simcall_BODY_cond_broadcast(smx_cond_t cond)
215 {
216   if (0) /* Go to that function to follow the code flow through the simcall barrier */
217     SIMIX_cond_broadcast(cond);
218   return simcall<void, smx_cond_t>(SIMCALL_COND_BROADCAST, cond);
219 }
220
221 inline static void simcall_BODY_sem_acquire(smx_sem_t sem)
222 {
223   if (0) /* Go to that function to follow the code flow through the simcall barrier */
224     simcall_HANDLER_sem_acquire(&SIMIX_process_self()->simcall, sem);
225   return simcall<void, smx_sem_t>(SIMCALL_SEM_ACQUIRE, sem);
226 }
227
228 inline static void simcall_BODY_sem_acquire_timeout(smx_sem_t sem, double timeout)
229 {
230   if (0) /* Go to that function to follow the code flow through the simcall barrier */
231     simcall_HANDLER_sem_acquire_timeout(&SIMIX_process_self()->simcall, sem, timeout);
232   return simcall<void, smx_sem_t, double>(SIMCALL_SEM_ACQUIRE_TIMEOUT, sem, timeout);
233 }
234
235 inline static sg_size_t simcall_BODY_file_read(surf_file_t fd, sg_size_t size)
236 {
237   if (0) /* Go to that function to follow the code flow through the simcall barrier */
238     simcall_HANDLER_file_read(&SIMIX_process_self()->simcall, fd, size);
239   return simcall<sg_size_t, surf_file_t, sg_size_t>(SIMCALL_FILE_READ, fd, size);
240 }
241
242 inline static sg_size_t simcall_BODY_file_write(surf_file_t fd, sg_size_t size)
243 {
244   if (0) /* Go to that function to follow the code flow through the simcall barrier */
245     simcall_HANDLER_file_write(&SIMIX_process_self()->simcall, fd, size);
246   return simcall<sg_size_t, surf_file_t, sg_size_t>(SIMCALL_FILE_WRITE, fd, size);
247 }
248
249 inline static int simcall_BODY_mc_random(int min, int max)
250 {
251   if (0) /* Go to that function to follow the code flow through the simcall barrier */
252     simcall_HANDLER_mc_random(&SIMIX_process_self()->simcall, min, max);
253   return simcall<int, int, int>(SIMCALL_MC_RANDOM, min, max);
254 }
255
256 inline static void simcall_BODY_set_category(boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl> synchro, const char* category)
257 {
258   if (0) /* Go to that function to follow the code flow through the simcall barrier */
259     SIMIX_set_category(synchro, category);
260   return simcall<void, boost::intrusive_ptr<simgrid::kernel::activity::ActivityImpl>, const char*>(SIMCALL_SET_CATEGORY, synchro, category);
261 }
262
263 inline static void simcall_BODY_run_kernel(std::function<void()> const* code)
264 {
265   if (0) /* Go to that function to follow the code flow through the simcall barrier */
266     SIMIX_run_kernel(code);
267   return simcall<void, std::function<void()> const*>(SIMCALL_RUN_KERNEL, code);
268 }
269
270 inline static void simcall_BODY_run_blocking(std::function<void()> const* code)
271 {
272   if (0) /* Go to that function to follow the code flow through the simcall barrier */
273     SIMIX_run_blocking(code);
274   return simcall<void, std::function<void()> const*>(SIMCALL_RUN_BLOCKING, code);
275 } /** @endcond */