* \return A new SIMIX execution synchronization
*/
smx_activity_t simcall_execution_parallel_start(const char* name, int host_nb, sg_host_t* host_list,
- double* flops_amount, double* bytes_amount, double amount, double rate,
- double timeout)
+ double* flops_amount, double* bytes_amount, double rate, double timeout)
{
/* checking for infinite values */
for (int i = 0 ; i < host_nb ; ++i) {
}
}
- xbt_assert(std::isfinite(amount), "amount is not finite!");
xbt_assert(std::isfinite(rate), "rate is not finite!");
- return simcall_BODY_execution_parallel_start(name, host_nb, host_list, flops_amount, bytes_amount, amount, rate,
- timeout);
+ return simcall_BODY_execution_parallel_start(name, host_nb, host_list, flops_amount, bytes_amount, rate, timeout);
}
/**
{
simcall_BODY_process_on_exit(process, fun, data);
}
-/**
- * \ingroup simix_process_management
- * \brief Sets the process to be auto-restarted or not by SIMIX when its host comes back up.
- * Will restart the process when the host comes back up if auto_restart is set to 1.
- */
-
-XBT_PUBLIC(void) simcall_process_auto_restart_set(smx_actor_t process, int auto_restart)
-{
- simcall_BODY_process_auto_restart_set(process, auto_restart);
-}
-/**
- * \ingroup simix_process_management
- * \brief Restarts the process, killing it and starting it again from scratch.
- */
-XBT_PUBLIC(smx_actor_t) simcall_process_restart(smx_actor_t process)
-{
- return (smx_actor_t) simcall_BODY_process_restart(process);
-}
/**
* \ingroup simix_process_management
* \brief Creates a new sleep SIMIX synchro.
fprintf(stderr,"You must run MSG_init before using MSG\n"); // We can't use xbt_die since we may get there before the initialization
xbt_abort();
}
- return simcall_BODY_mutex_init();
+ return simgrid::simix::kernelImmediate([] { return new simgrid::simix::MutexImpl(); });
}
/**
simcall_BODY_cond_broadcast(cond);
}
-/**
- * \ingroup simix_synchro_management
- *
- */
-smx_sem_t simcall_sem_init(int capacity)
-{
- return simcall_BODY_sem_init(capacity);
-}
-
-/**
- * \ingroup simix_synchro_management
- *
- */
-void simcall_sem_release(smx_sem_t sem)
-{
- simcall_BODY_sem_release(sem);
-}
-
-/**
- * \ingroup simix_synchro_management
- *
- */
-int simcall_sem_would_block(smx_sem_t sem)
-{
- return simcall_BODY_sem_would_block(sem);
-}
-
/**
* \ingroup simix_synchro_management
*
simcall_BODY_sem_acquire_timeout(sem, timeout);
}
-/**
- * \ingroup simix_synchro_management
- *
- */
-int simcall_sem_get_capacity(smx_sem_t sem)
-{
- return simcall_BODY_sem_get_capacity(sem);
-}
-
/**
* \ingroup simix_file_management
*
*/
-sg_size_t simcall_file_read(surf_file_t fd, sg_size_t size, sg_host_t host)
+sg_size_t simcall_file_read(surf_file_t fd, sg_size_t size)
{
- return simcall_BODY_file_read(fd, size, host);
+ return simcall_BODY_file_read(fd, size);
}
/**
* \ingroup simix_file_management
*
*/
-sg_size_t simcall_file_write(surf_file_t fd, sg_size_t size, sg_host_t host)
-{
- return simcall_BODY_file_write(fd, size, host);
-}
-
-/**
- * \ingroup simix_file_management
- * \brief
- */
-surf_file_t simcall_file_open(const char* mount, const char* path, sg_storage_t st)
+sg_size_t simcall_file_write(surf_file_t fd, sg_size_t size)
{
- return simcall_BODY_file_open(mount, path, st);
+ return simcall_BODY_file_write(fd, size);
}
void simcall_run_kernel(std::function<void()> const& code)