mirror of
https://github.com/retro100/dosbox-wii.git
synced 2024-11-16 15:19:15 +01:00
448 lines
11 KiB
C++
448 lines
11 KiB
C++
/*
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* Copyright (C) 2002-2009 The DOSBox Team
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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 as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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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 License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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/* $Id: serialport.h,v 1.18 2009/09/25 23:40:48 h-a-l-9000 Exp $ */
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#ifndef DOSBOX_SERIALPORT_H
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#define DOSBOX_SERIALPORT_H
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#ifndef DOSBOX_DOSBOX_H
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#include "dosbox.h"
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#endif
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#ifndef DOSBOX_INOUT_H
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#include "inout.h"
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#endif
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#ifndef DOSBOX_TIMER_H
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#include "timer.h"
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#endif
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#ifndef DOSBOX_DOS_INC_H
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#include "dos_inc.h"
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#endif
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#ifndef DOSBOX_PROGRAMS_H
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#include "programs.h"
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#endif
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// set this to 1 for serial debugging in release mode
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#define SERIAL_DBG_FORCED 0
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#if (C_DEBUG || SERIAL_DBG_FORCED)
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#define SERIAL_DEBUG 1
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#endif
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#if SERIAL_DEBUG
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#include "hardware.h"
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#endif
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// Serial port interface
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class MyFifo {
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public:
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MyFifo(Bitu maxsize_) {
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maxsize=size=maxsize_;
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pos=used=0;
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data=new Bit8u[size];
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}
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~MyFifo() {
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delete[] data;
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}
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INLINE Bitu getFree(void) {
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return size-used;
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}
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bool isEmpty() {
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return used==0;
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}
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bool isFull() {
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return (size-used)==0;
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}
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INLINE Bitu getUsage(void) {
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return used;
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}
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void setSize(Bitu newsize)
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{
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size=newsize;
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pos=used=0;
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}
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void clear(void) {
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pos=used=0;
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data[0]=0;
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}
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bool addb(Bit8u _val) {
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Bitu where=pos+used;
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if (where>=size) where-=size;
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if(used>=size) {
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// overwrite last byte
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if(where==0) where=size-1;
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else where--;
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data[where]=_val;
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return false;
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}
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data[where]=_val;
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used++;
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return true;
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}
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Bit8u getb() {
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if (!used) return data[pos];
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Bitu where=pos;
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if (++pos>=size) pos-=size;
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used--;
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return data[where];
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}
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Bit8u getTop() {
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Bitu where=pos+used;
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if (where>=size) where-=size;
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if(used>=size) {
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if(where==0) where=size-1;
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else where--;
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}
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return data[where];
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}
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Bit8u probeByte() {
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return data[pos];
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}
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private:
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Bit8u * data;
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Bitu maxsize,size,pos,used;
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};
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class CSerial {
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public:
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#if SERIAL_DEBUG
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FILE * debugfp;
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bool dbg_modemcontrol; // RTS,CTS,DTR,DSR,RI,CD
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bool dbg_serialtraffic;
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bool dbg_register;
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bool dbg_interrupt;
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bool dbg_aux;
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void log_ser(bool active, char const* format,...);
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#endif
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static bool getBituSubstring(const char* name,Bitu* data, CommandLine* cmd);
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bool InstallationSuccessful;// check after constructing. If
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// something was wrong, delete it right away.
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// Constructor takes com port number (0-3)
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CSerial(Bitu id, CommandLine* cmd);
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virtual ~CSerial();
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IO_ReadHandleObject ReadHandler[8];
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IO_WriteHandleObject WriteHandler[8];
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float bytetime; // how long a byte takes to transmit/receive in milliseconds
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void changeLineProperties();
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Bitu idnumber;
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void setEvent(Bit16u type, float duration);
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void removeEvent(Bit16u type);
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void handleEvent(Bit16u type);
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virtual void handleUpperEvent(Bit16u type)=0;
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// defines for event type
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#define SERIAL_TX_LOOPBACK_EVENT 0
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#define SERIAL_THR_LOOPBACK_EVENT 1
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#define SERIAL_ERRMSG_EVENT 2
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#define SERIAL_TX_EVENT 3
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#define SERIAL_RX_EVENT 4
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#define SERIAL_POLLING_EVENT 5
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#define SERIAL_THR_EVENT 6
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#define SERIAL_RX_TIMEOUT_EVENT 7
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#define SERIAL_BASE_EVENT_COUNT 7
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#define COMNUMBER idnumber+1
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Bitu irq;
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// CSerial requests an update of the input lines
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virtual void updateMSR()=0;
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// Control lines from prepherial to serial port
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bool getDTR();
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bool getRTS();
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bool getRI();
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bool getCD();
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bool getDSR();
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bool getCTS();
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void setRI(bool value);
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void setDSR(bool value);
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void setCD(bool value);
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void setCTS(bool value);
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// From serial port to prepherial
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// set output lines
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virtual void setRTSDTR(bool rts, bool dtr)=0;
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virtual void setRTS(bool val)=0;
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virtual void setDTR(bool val)=0;
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// Register access
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void Write_THR(Bit8u data);
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void Write_IER(Bit8u data);
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void Write_FCR(Bit8u data);
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void Write_LCR(Bit8u data);
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void Write_MCR(Bit8u data);
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// Really old hardware seems to have the delta part of this register writable
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void Write_MSR(Bit8u data);
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void Write_SPR(Bit8u data);
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void Write_reserved(Bit8u data, Bit8u address);
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Bitu Read_RHR();
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Bitu Read_IER();
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Bitu Read_ISR();
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Bitu Read_LCR();
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Bitu Read_MCR();
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Bitu Read_LSR();
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Bitu Read_MSR();
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Bitu Read_SPR();
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// If a byte comes from loopback or prepherial, put it in here.
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void receiveByte(Bit8u data);
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void receiveByteEx(Bit8u data, Bit8u error);
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// If an error was received, put it here (in LSR register format)
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void receiveError(Bit8u errorword);
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// depratched
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// connected device checks, if port can receive data:
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bool CanReceiveByte();
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// when THR was shifted to TX
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void ByteTransmitting();
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// When done sending, notify here
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void ByteTransmitted();
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// Transmit byte to prepherial
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virtual void transmitByte(Bit8u val, bool first)=0;
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// switch break state to the passed value
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virtual void setBreak(bool value)=0;
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// change baudrate, number of bits, parity, word length al at once
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virtual void updatePortConfig(Bit16u divider, Bit8u lcr)=0;
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void Init_Registers();
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bool Putchar(Bit8u data, bool wait_dtr, bool wait_rts, Bitu timeout);
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bool Getchar(Bit8u* data, Bit8u* lsr, bool wait_dsr, Bitu timeout);
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private:
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DOS_Device* mydosdevice;
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// I used this spec: st16c450v420.pdf
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void ComputeInterrupts();
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// a sub-interrupt is triggered
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void rise(Bit8u priority);
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// clears the pending sub-interrupt
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void clear(Bit8u priority);
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#define ERROR_PRIORITY 4 // overrun, parity error, frame error, break
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#define RX_PRIORITY 1 // a byte has been received
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#define TX_PRIORITY 2 // tx buffer has become empty
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#define MSR_PRIORITY 8 // CRS, DSR, RI, DCD change
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#define TIMEOUT_PRIORITY 0x10
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#define NONE_PRIORITY 0
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Bit8u waiting_interrupts; // these are on, but maybe not enabled
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// 16C550
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// read/write name
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Bit16u baud_divider;
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#define RHR_OFFSET 0 // r Receive Holding Register, also LSB of Divisor Latch (r/w)
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// Data: whole byte
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#define THR_OFFSET 0 // w Transmit Holding Register
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// Data: whole byte
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Bit8u IER; // r/w Interrupt Enable Register, also MSB of Divisor Latch
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#define IER_OFFSET 1
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bool irq_active;
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#define RHR_INT_Enable_MASK 0x1
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#define THR_INT_Enable_MASK 0x2
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#define Receive_Line_INT_Enable_MASK 0x4
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#define Modem_Status_INT_Enable_MASK 0x8
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Bit8u ISR; // r Interrupt Status Register
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#define ISR_OFFSET 2
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#define ISR_CLEAR_VAL 0x1
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#define ISR_FIFOTIMEOUT_VAL 0xc
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#define ISR_ERROR_VAL 0x6
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#define ISR_RX_VAL 0x4
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#define ISR_TX_VAL 0x2
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#define ISR_MSR_VAL 0x0
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public:
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Bit8u LCR; // r/w Line Control Register
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private:
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#define LCR_OFFSET 3
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// bit0: word length bit0
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// bit1: word length bit1
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// bit2: stop bits
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// bit3: parity enable
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// bit4: even parity
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// bit5: set parity
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// bit6: set break
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// bit7: divisor latch enable
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#define LCR_BREAK_MASK 0x40
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#define LCR_DIVISOR_Enable_MASK 0x80
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#define LCR_PORTCONFIG_MASK 0x3F
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#define LCR_PARITY_NONE 0x0
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#define LCR_PARITY_ODD 0x8
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#define LCR_PARITY_EVEN 0x18
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#define LCR_PARITY_MARK 0x28
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#define LCR_PARITY_SPACE 0x38
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#define LCR_DATABITS_5 0x0
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#define LCR_DATABITS_6 0x1
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#define LCR_DATABITS_7 0x2
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#define LCR_DATABITS_8 0x3
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#define LCR_STOPBITS_1 0x0
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#define LCR_STOPBITS_MORE_THAN_1 0x4
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// Modem Control Register
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// r/w
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#define MCR_OFFSET 4
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bool dtr; // bit0: DTR
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bool rts; // bit1: RTS
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bool op1; // bit2: OP1
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bool op2; // bit3: OP2
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bool loopback; // bit4: loop back enable
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#define MCR_DTR_MASK 0x1
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#define MCR_RTS_MASK 0x2
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#define MCR_OP1_MASK 0x4
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#define MCR_OP2_MASK 0x8
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#define MCR_LOOPBACK_Enable_MASK 0x10
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public:
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Bit8u LSR; // r Line Status Register
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private:
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#define LSR_OFFSET 5
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#define LSR_RX_DATA_READY_MASK 0x1
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#define LSR_OVERRUN_ERROR_MASK 0x2
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#define LSR_PARITY_ERROR_MASK 0x4
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#define LSR_FRAMING_ERROR_MASK 0x8
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#define LSR_RX_BREAK_MASK 0x10
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#define LSR_TX_HOLDING_EMPTY_MASK 0x20
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#define LSR_TX_EMPTY_MASK 0x40
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#define LSR_ERROR_MASK 0x1e
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// error printing
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bool errormsg_pending;
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Bitu framingErrors;
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Bitu parityErrors;
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Bitu overrunErrors;
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Bitu txOverrunErrors;
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Bitu overrunIF0;
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Bitu breakErrors;
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// Modem Status Register
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// r
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#define MSR_OFFSET 6
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bool d_cts; // bit0: deltaCTS
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bool d_dsr; // bit1: deltaDSR
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bool d_ri; // bit2: deltaRI
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bool d_cd; // bit3: deltaCD
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bool cts; // bit4: CTS
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bool dsr; // bit5: DSR
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bool ri; // bit6: RI
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bool cd; // bit7: CD
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#define MSR_delta_MASK 0xf
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#define MSR_LINE_MASK 0xf0
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#define MSR_dCTS_MASK 0x1
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#define MSR_dDSR_MASK 0x2
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#define MSR_dRI_MASK 0x4
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#define MSR_dCD_MASK 0x8
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#define MSR_CTS_MASK 0x10
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#define MSR_DSR_MASK 0x20
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#define MSR_RI_MASK 0x40
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#define MSR_CD_MASK 0x80
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Bit8u SPR; // r/w Scratchpad Register
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#define SPR_OFFSET 7
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// For loopback purposes...
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Bit8u loopback_data;
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void transmitLoopbackByte(Bit8u val, bool value);
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// 16C550 (FIFO)
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public: // todo remove
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MyFifo* rxfifo;
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private:
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MyFifo* txfifo;
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MyFifo* errorfifo;
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Bitu errors_in_fifo;
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Bitu rx_interrupt_threshold;
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Bitu fifosize;
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Bit8u FCR;
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bool sync_guardtime;
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#define FIFO_STATUS_ACTIVE 0xc0 // FIFO is active AND works ;)
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#define FIFO_ERROR 0x80
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#define FCR_ACTIVATE 0x01
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#define FCR_CLEAR_RX 0x02
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#define FCR_CLEAR_TX 0x04
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#define FCR_OFFSET 2
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#define FIFO_FLOWCONTROL 0x20
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};
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extern CSerial* serialports[];
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const Bit8u serial_defaultirq[] = { 4, 3, 4, 3 };
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const Bit16u serial_baseaddr[] = {0x3f8,0x2f8,0x3e8,0x2e8};
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const char* const serial_comname[]={"COM1","COM2","COM3","COM4"};
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// the COM devices
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class device_COM : public DOS_Device {
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public:
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// Creates a COM device that communicates with the num-th parallel port, i.e. is LPTnum
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device_COM(class CSerial* sc);
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~device_COM();
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bool Read(Bit8u * data,Bit16u * size);
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bool Write(Bit8u * data,Bit16u * size);
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bool Seek(Bit32u * pos,Bit32u type);
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bool Close();
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Bit16u GetInformation(void);
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private:
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CSerial* sclass;
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};
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#endif
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