Beispiel #1
0
rtems_status_code rtems_message_queue_broadcast(
  rtems_id    id,
  const void *buffer,
  size_t      size,
  uint32_t   *count
)
{
  register Message_queue_Control *the_message_queue;
  Objects_Locations               location;
  CORE_message_queue_Status       core_status;

  if ( !buffer )
    return RTEMS_INVALID_ADDRESS;

  if ( !count )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {

    case OBJECTS_LOCAL:
      core_status = _CORE_message_queue_Broadcast(
                      &the_message_queue->message_queue,
                      buffer,
                      size,
                      id,
                      #if defined(RTEMS_MULTIPROCESSING)
                        _Message_queue_Core_message_queue_mp_support,
                      #else
                        NULL,
                      #endif
                      count
                    );

      _Thread_Enable_dispatch();
      return
        _Message_queue_Translate_core_message_queue_return_code( core_status );

#if defined(RTEMS_MULTIPROCESSING)
    case OBJECTS_REMOTE:
      _Thread_Executing->Wait.return_argument = count;

      return
        _Message_queue_MP_Send_request_packet(
          MESSAGE_QUEUE_MP_BROADCAST_REQUEST,
          id,
          buffer,
          &size,
          0,                               /* option_set not used */
          MPCI_DEFAULT_TIMEOUT
        );
#endif

    case OBJECTS_ERROR:
      break;
  }
  return RTEMS_INVALID_ID;
}
epos_status_code epos_message_queue_send(
  epos_id    id,
  const void *buffer,
  size_t      size
)
{
  register Message_queue_Control  *the_message_queue;
  Objects_Locations                location;
  CORE_message_queue_Status        status;

  if ( !buffer )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {

    case OBJECTS_LOCAL:
      status = _CORE_message_queue_Send(
        &the_message_queue->message_queue,
        buffer,
        size,
        id,
        MESSAGE_QUEUE_MP_HANDLER,
        false,   /* sender does not block */
        0        /* no timeout */
      );

      _Thread_Enable_dispatch();

      /*
       *  Since this API does not allow for blocking sends, we can directly
       *  return the returned status.
       */

      return _Message_queue_Translate_core_message_queue_return_code(status);

#if defined(RTEMS_MULTIPROCESSING)
    case OBJECTS_REMOTE:
      return _Message_queue_MP_Send_request_packet(
        MESSAGE_QUEUE_MP_SEND_REQUEST,
        id,
        buffer,
        &size,
        0,                               /* option_set */
        MPCI_DEFAULT_TIMEOUT
      );
      break;
#endif

    case OBJECTS_ERROR:
      break;
  }
  return RTEMS_INVALID_ID;
}
Beispiel #3
0
rtems_status_code rtems_message_queue_flush(
  rtems_id  id,
  uint32_t *count
)
{
  register Message_queue_Control *the_message_queue;
  Objects_Locations               location;

  if ( !count )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {

    case OBJECTS_LOCAL:
      *count = _CORE_message_queue_Flush( &the_message_queue->message_queue );
      _Thread_Enable_dispatch();
      return RTEMS_SUCCESSFUL;

#if defined(RTEMS_MULTIPROCESSING)
    case OBJECTS_REMOTE:
      _Thread_Executing->Wait.return_argument = count;

      return
        _Message_queue_MP_Send_request_packet(
          MESSAGE_QUEUE_MP_FLUSH_REQUEST,
          id,
          0,                               /* buffer not used */
          0,                               /* size */
          0,                               /* option_set not used */
          MPCI_DEFAULT_TIMEOUT
        );
#endif

    case OBJECTS_ERROR:
      break;
  }

  return RTEMS_INVALID_ID;
}
rtems_status_code rtems_message_queue_get_number_pending(
  rtems_id  id,
  uint32_t *count
)
{
  Message_queue_Control          *the_message_queue;
  Objects_Locations               location;

  if ( !count )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {

    case OBJECTS_LOCAL:
      *count = the_message_queue->message_queue.number_of_pending_messages;
      _Objects_Put( &the_message_queue->Object );
      return RTEMS_SUCCESSFUL;

#if defined(RTEMS_MULTIPROCESSING)
    case OBJECTS_REMOTE:
      _Thread_Executing->Wait.return_argument = count;

      return _Message_queue_MP_Send_request_packet(
          MESSAGE_QUEUE_MP_GET_NUMBER_PENDING_REQUEST,
          id,
          0,                               /* buffer not used */
          0,                               /* size */
          0,                               /* option_set not used */
          MPCI_DEFAULT_TIMEOUT
        );
#endif

    case OBJECTS_ERROR:
      break;
  }

  return RTEMS_INVALID_ID;
}
rtems_status_code rtems_message_queue_get_number_pending(
  Objects_Id  id,
  uint32_t   *count
)
{
  register Message_queue_Control *the_message_queue;
  Objects_Locations               location;

  if ( !count )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {
    case OBJECTS_REMOTE:
#if defined(RTEMS_MULTIPROCESSING)
      _Thread_Executing->Wait.return_argument = count;

      return _Message_queue_MP_Send_request_packet(
          MESSAGE_QUEUE_MP_GET_NUMBER_PENDING_REQUEST,
          id,
          0,                               /* buffer not used */
          0,                               /* size */
          0,                               /* option_set not used */
          MPCI_DEFAULT_TIMEOUT
        );
#endif

    case OBJECTS_ERROR:
      return RTEMS_INVALID_ID;

    case OBJECTS_LOCAL:
      *count = the_message_queue->message_queue.number_of_pending_messages;
      _Thread_Enable_dispatch();
      return RTEMS_SUCCESSFUL;
  }

  return RTEMS_INTERNAL_ERROR;   /* unreached - only to remove warnings */
}
Beispiel #6
0
rtems_status_code rtems_message_queue_receive(
  rtems_id        id,
  void           *buffer,
  size_t         *size,
  rtems_option    option_set,
  rtems_interval  timeout
)
{
  Message_queue_Control          *the_message_queue;
  Objects_Locations               location;
  bool                            wait;
  Thread_Control                 *executing;

  if ( !buffer )
    return RTEMS_INVALID_ADDRESS;

  if ( !size )
    return RTEMS_INVALID_ADDRESS;

  the_message_queue = _Message_queue_Get( id, &location );
  switch ( location ) {

    case OBJECTS_LOCAL:
      if ( _Options_Is_no_wait( option_set ) )
        wait = false;
      else
        wait = true;

      executing = _Thread_Executing;
      _CORE_message_queue_Seize(
        &the_message_queue->message_queue,
        executing,
        the_message_queue->Object.id,
        buffer,
        size,
        wait,
        timeout
      );
      _Objects_Put( &the_message_queue->Object );
      return _Message_queue_Translate_core_message_queue_return_code(
        executing->Wait.return_code
      );

#if defined(RTEMS_MULTIPROCESSING)
    case OBJECTS_REMOTE:
      return _Message_queue_MP_Send_request_packet(
          MESSAGE_QUEUE_MP_RECEIVE_REQUEST,
          id,
          buffer,
          size,
          option_set,
          timeout
        );
#endif

    case OBJECTS_ERROR:
      break;
  }

  return RTEMS_INVALID_ID;
}