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test_afh_device.py

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    StatusRead.cc 4.71 KiB
    //#  StatusRead.cc: implementation of the StatusRead class
    //#
    //#  Copyright (C) 2002-2004
    //#  ASTRON (Netherlands Foundation for Research in Astronomy)
    //#  P.O.Box 2, 7990 AA Dwingeloo, The Netherlands, seg@astron.nl
    //#
    //#  This program is free software; you can redistribute it and/or modify
    //#  it under the terms of the GNU General Public License as published by
    //#  the Free Software Foundation; either version 2 of the License, or
    //#  (at your option) any later version.
    //#
    //#  This program is distributed in the hope that it will be useful,
    //#  but WITHOUT ANY WARRANTY; without even the implied warranty of
    //#  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
    //#  GNU General Public License for more details.
    //#
    //#  You should have received a copy of the GNU General Public License
    //#  along with this program; if not, write to the Free Software
    //#  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
    //#
    //#  $Id$
    
    #include <lofar_config.h>
    #include <Common/LofarLogger.h>
    
    #include <APL/RSP_Protocol/EPA_Protocol.ph>
    #include <APL/RSP_Protocol/RSP_Protocol.ph>
    #include <APL/RTCCommon/PSAccess.h>
    #include <netinet/in.h>
    
    #include "StatusRead.h"
    #include "Cache.h"
    
    using namespace blitz;
    using namespace LOFAR;
    using namespace RSP;
    using namespace EPA_Protocol;
    using namespace RSP_Protocol;
    using namespace RTC;
    
    StatusRead::StatusRead(GCFPortInterface& board_port, int board_id)
      : SyncAction(board_port, board_id, 1)
    {
      memset(&m_hdr, 0, sizeof(MEPHeader));
    
      // this action should be performed at initialisation
      //doAtInit();
    }
    
    StatusRead::~StatusRead()
    {
      /* TODO: delete event? */
    }
    
    void StatusRead::sendrequest()
    {
      Cache::getInstance().getState().sys().read(getBoardId());
    
      // send read status request to check status of the write
      EPAReadEvent rspstatus;
      rspstatus.hdr.set(MEPHeader::RSR_STATUS_HDR);
    
      m_hdr = rspstatus.hdr;
      getBoardPort().send(rspstatus);
    }
    
    void StatusRead::sendrequest_status()
    {
      // intentionally left empty
    }
    
    GCFEvent::TResult StatusRead::handleack(GCFEvent& event, GCFPortInterface& /*port*/)
    {
      if (EPA_RSR_STATUS != event.signal) {
          LOG_WARN("StatusRead::handleack: unexpected ack");
          return GCFEvent::NOT_HANDLED;
        }
    
      EPARsrStatusEvent ack(event);
    
      if (!ack.hdr.isValidAck(m_hdr)) {
          Cache::getInstance().getState().sys().read_error(getBoardId());
          LOG_ERROR("StatusRead::handleack: invalid ack");
          return GCFEvent::NOT_HANDLED;
        }
    
      SystemStatus& status = Cache::getInstance().getBack().getSystemStatus();
    
      // copy board status
      memcpy(&status.board()(getBoardId()), &ack.board, sizeof(BoardStatus));
    
      // sanity check on SYNC status, status for all AP's must be the same
      if (ack.board.ap0_sync.sample_offset != ack.board.ap1_sync.sample_offset
          || ack.board.ap0_sync.sample_offset != ack.board.ap2_sync.sample_offset
          || ack.board.ap0_sync.sample_offset != ack.board.ap3_sync.sample_offset) {
          LOG_WARN(formatString("RSP[%02d]: sample_offset mismatch", getBoardId()));
        }
    
      if (ack.board.ap0_sync.sync_count != ack.board.ap1_sync.sync_count
          || ack.board.ap0_sync.sync_count != ack.board.ap2_sync.sync_count
          || ack.board.ap0_sync.sync_count != ack.board.ap3_sync.sync_count) {
          LOG_WARN(formatString("RSP[%02d]: sync_count mismatch", getBoardId()));
        }
    
      if (ack.board.ap0_sync.slice_count != ack.board.ap1_sync.slice_count
          || ack.board.ap0_sync.slice_count != ack.board.ap2_sync.slice_count
          || ack.board.ap0_sync.slice_count != ack.board.ap3_sync.slice_count) {
          LOG_WARN(formatString("RSP[%02d]: slice_count mismatch", getBoardId()));
        }
    
      Cache::getInstance().getState().sys().read_ack(getBoardId());
    
      // if cache value different from hardware reported value, make equal
      switch (ack.board.rsp.bp_clock) {
    
      case 125:
      case 160:
      case 200:
        if (0 == getBoardId()) {
          if (0 == Cache::getInstance().getBack().getClock()) {
    
    #if 0
        LOG_INFO_STR(formatString("Receiving initial clock setting from RSP board: %d MHz. Adjusting cache value.",
                      ack.board.rsp.bp_clock));
        Cache::getInstance().getFront().getClock() = ack.board.rsp.bp_clock;
        Cache::getInstance().getBack().getClock()  = ack.board.rsp.bp_clock;
    #endif
    
          } else if (ack.board.rsp.bp_clock != Cache::getInstance().getBack().getClock()) {
            LOG_WARN_STR(formatString("Reported clock (%d MHz) is different from cache settings (%d MHz) on RSP board %d",
                      ack.board.rsp.bp_clock, Cache::getInstance().getBack().getClock(), getBoardId()));
          }
        }
        break;
    
      default:
        LOG_WARN_STR(formatString("Invalid clock setting received from RSP board (%d): %d MHz",
                      getBoardId(), ack.board.rsp.bp_clock));
        break;
      }
    
      return GCFEvent::HANDLED;
    }