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			170 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			170 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
// sas64000gpi.cpp
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//
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// A Rivendell switcher driver for the SAS64000 connected via 
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//   a GPI-1600
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//
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//   (C) Copyright 2002-2019 Fred Gleason <fredg@paravelsystems.com>
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//
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//   This program is free software; you can redistribute it and/or modify
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//   it under the terms of the GNU General Public License version 2 as
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//   published by the Free Software Foundation.
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//
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//   This program is distributed in the hope that it will be useful,
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//   but WITHOUT ANY WARRANTY; without even the implied warranty of
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//   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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//   GNU General Public License for more details.
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//
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//   You should have received a copy of the GNU General Public
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//   License along with this program; if not, write to the Free Software
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//   Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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//
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#include <stdlib.h>
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#include <rdapplication.h>
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#include "globals.h"
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#include "sas64000gpi.h"
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Sas64000Gpi::Sas64000Gpi(RDMatrix *matrix,QObject *parent)
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  : Switcher(matrix,parent)
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{
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  //
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  // Get Matrix Parameters
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  //
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  sas_matrix=matrix->matrix();
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  sas_inputs=matrix->inputs();
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  sas_outputs=matrix->outputs();
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  sas_gpis=matrix->gpis();
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  sas_gpos=matrix->gpos();
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  //
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  // Initialize the TTY Port
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  //
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  RDTty *tty=new RDTty(rda->station()->name(),matrix->port(RDMatrix::Primary));
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  sas_device=new RDTTYDevice();
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  if(tty->active()) {
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    sas_device->setName(tty->port());
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    sas_device->setSpeed(tty->baudRate());
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    sas_device->setWordLength(tty->dataBits());
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    sas_device->setParity(tty->parity());
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    sas_device->open(QIODevice::Unbuffered|QIODevice::ReadWrite);
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  }
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  delete tty;
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  //
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  // Interval OneShots
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  //
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  sas_gpo_oneshot=new RDOneShot(this);
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  connect(sas_gpo_oneshot,SIGNAL(timeout(int value)),
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	  this,SLOT(gpoOneshotData(int)));
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}
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Sas64000Gpi::~Sas64000Gpi()
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{
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  delete sas_device;
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}
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RDMatrix::Type Sas64000Gpi::type()
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{
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  return RDMatrix::Sas64000Gpi;
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}
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unsigned Sas64000Gpi::gpiQuantity()
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{
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  return sas_gpis;
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}
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unsigned Sas64000Gpi::gpoQuantity()
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{
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  return sas_gpos;
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}
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bool Sas64000Gpi::primaryTtyActive()
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{
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  return true;
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}
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bool Sas64000Gpi::secondaryTtyActive()
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{
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  return false;
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}
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void Sas64000Gpi::processCommand(RDMacro *cmd)
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{
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  char str[9];
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  char cmd_byte;
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  switch(cmd->command()) {
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      case RDMacro::ST:
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	if((cmd->arg(1).toInt()<1)||(cmd->arg(1).toInt()>sas_inputs)||
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	   (cmd->arg(2).toInt()<1)||(cmd->arg(2).toInt()>sas_outputs)) {
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	  cmd->acknowledge(false);
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	  emit rmlEcho(cmd);
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	  return;
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	}
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	sprintf(str,"\xFE%c%c%c%c%c\xFF",
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		(char)((cmd->arg(2).toInt()-1)/16)&0x0F,
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		(char)((cmd->arg(2).toInt()-1)%16)&0x0F,
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		(char)((cmd->arg(1).toInt()-1)%128),
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		(char)((cmd->arg(1).toInt()-1)/128),
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		(char)(((cmd->arg(1).toInt()-1)%128)+
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		((cmd->arg(1).toInt()-1)/128))&0x7F);
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	sas_device->write(str,7);
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	cmd->acknowledge(true);
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	emit rmlEcho(cmd);
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	break;
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      case RDMacro::GO:
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	if((cmd->arg(1).lower()!="o")||
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	   (cmd->arg(2).toInt()<1)||(cmd->arg(2).toInt()>sas_gpos)) {
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	  cmd->acknowledge(false);
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	  emit rmlEcho(cmd);
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	  return;
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	}
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	if(cmd->arg(4).toInt()==0) {   // Latch
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	  if(cmd->arg(3).toInt()==0) {   // Off
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	    cmd_byte=0xF9;
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	    emit gpoChanged(sas_matrix,cmd->arg(2).toInt()-1,false);
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	  }
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	  else {
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	    cmd_byte=0xFA;
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	    emit gpoChanged(sas_matrix,cmd->arg(2).toInt()-1,true);
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	  }
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	}
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	else {  // Pulse
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	  if(cmd->arg(3).toInt()==0) {
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	    cmd->acknowledge(false);
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	    emit rmlEcho(cmd);
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	    return;
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	  }
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	  cmd_byte=0xFB;
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	  sas_gpo_oneshot->start(cmd->arg(2).toInt()-1,500);
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	  emit gpoChanged(sas_matrix,cmd->arg(2).toInt()-1,true);
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	}
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	sprintf(str,"%c%c\xFF",cmd_byte,cmd->arg(2).toInt()-1);
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	sas_device->write(str,3);
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	cmd->acknowledge(true);
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	emit rmlEcho(cmd);
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	break;
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      default:
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	cmd->acknowledge(false);
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	emit rmlEcho(cmd);
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	break;
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  }
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}
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void Sas64000Gpi::gpoOneshotData(int value)
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{
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  emit gpoChanged(sas_matrix,value,false);
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}
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