/** * @file * * @ingroup RTEMSImplClassicEvent * * @brief This source file contains the implementation of * _Event_Seize() and the Event Manager multiprocessing (MP) support system * initialization. */ /* * COPYRIGHT (c) 1989-2008. * On-Line Applications Research Corporation (OAR). * * The license and distribution terms for this file may be * found in the file LICENSE in this distribution or at * http://www.rtems.org/license/LICENSE. */ #ifdef HAVE_CONFIG_H #include "config.h" #endif #include #include #include #include #include #include rtems_status_code _Event_Seize( rtems_event_set event_in, rtems_option option_set, rtems_interval ticks, rtems_event_set *event_out, Thread_Control *executing, Event_Control *event, Thread_Wait_flags wait_class, States_Control block_state, ISR_lock_Context *lock_context ) { rtems_event_set seized_events; rtems_event_set pending_events; bool success; Thread_Wait_flags intend_to_block; Per_CPU_Control *cpu_self; pending_events = event->pending_events; seized_events = _Event_sets_Get( pending_events, event_in ); if ( !_Event_sets_Is_empty( seized_events ) && (seized_events == event_in || _Options_Is_any( option_set )) ) { event->pending_events = _Event_sets_Clear( pending_events, seized_events ); _Thread_Wait_release_default( executing, lock_context ); *event_out = seized_events; return RTEMS_SUCCESSFUL; } if ( _Options_Is_no_wait( option_set ) ) { _Thread_Wait_release_default( executing, lock_context ); *event_out = seized_events; return RTEMS_UNSATISFIED; } intend_to_block = wait_class | THREAD_WAIT_STATE_INTEND_TO_BLOCK; /* * Note what we are waiting for BEFORE we enter the critical section. * The interrupt critical section management code needs this to be * set properly when we are marked as in the event critical section. * * NOTE: Since interrupts are disabled, this isn't that much of an * issue but better safe than sorry. */ executing->Wait.return_code = STATUS_SUCCESSFUL; executing->Wait.option = option_set; executing->Wait.count = event_in; executing->Wait.return_argument = event_out; _Thread_Wait_flags_set( executing, intend_to_block ); cpu_self = _Thread_Dispatch_disable_critical( lock_context ); _Thread_Wait_release_default( executing, lock_context ); if ( ticks ) { _Thread_Add_timeout_ticks( executing, cpu_self, ticks ); } _Thread_Set_state( executing, block_state ); success = _Thread_Wait_flags_try_change_acquire( executing, intend_to_block, wait_class | THREAD_WAIT_STATE_BLOCKED ); if ( !success ) { _Thread_Timer_remove( executing ); _Thread_Unblock( executing ); } _Thread_Dispatch_direct( cpu_self ); return _Status_Get_after_wait( executing ); } #if defined(RTEMS_MULTIPROCESSING) static void _Event_MP_Initialize( void ) { _MPCI_Register_packet_processor( MP_PACKET_EVENT, _Event_MP_Process_packet ); } RTEMS_SYSINIT_ITEM( _Event_MP_Initialize, RTEMS_SYSINIT_CLASSIC_EVENT_MP, RTEMS_SYSINIT_ORDER_MIDDLE ); #endif