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dosbox-staging/src/hardware/cmos.cpp

200 lines
5.5 KiB
C++

/*
* Copyright (C) 2002-2003 The DOSBox Team
*
* 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 Library 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.
*/
#include <time.h>
#include "dosbox.h"
#include "timer.h"
#include "pic.h"
#include "inout.h"
#include "mem.h"
static struct {
Bit8u regs[0x40];
bool nmi;
bool bcd;
Bit8u reg;
struct {
bool enabled;
Bit8u div;
Bitu micro;
} timer;
struct {
Bit64u timer;
Bit64u ended;
Bit64u alarm;
} last;
bool ack;
bool update_ended;
} cmos;
static void cmos_timerevent(void) {
PIC_ActivateIRQ(8);
if (cmos.ack) {
PIC_AddEvent(cmos_timerevent,cmos.timer.micro);
cmos.regs[0x0c]|=0x0a0;
cmos.ack=false;
}
}
static void cmos_checktimer(void) {
PIC_RemoveEvents(cmos_timerevent);
if (cmos.timer.div<=2) cmos.timer.div+=7;
cmos.timer.micro=(Bitu) (1000000.0/(32768.0 / (1 << (cmos.timer.div - 1))));
if (!cmos.timer.div || !cmos.timer.enabled) return;
LOG(LOG_PIT,LOG_NORMAL)("RTC Timer at %f hz",1000000.0/cmos.timer.micro);
PIC_AddEvent(cmos_timerevent,cmos.timer.micro);
}
void cmos_selreg(Bit32u port,Bit8u val) {
cmos.reg=val & 0x3f;
cmos.nmi=(val & 0x80)>0;
}
static void cmos_writereg(Bit32u port,Bit8u val) {
switch (cmos.reg) {
case 0x00: /* Seconds */
case 0x02: /* Minutes */
case 0x04: /* Hours */
case 0x06: /* Day of week */
case 0x07: /* Date of month */
case 0x08: /* Month */
case 0x09: /* Year */
/* Ignore writes to change alarm */
break;
case 0x01: /* Seconds Alarm */
case 0x03: /* Minutes Alarm */
case 0x05: /* Hours Alarm */
LOG(LOG_BIOS,LOG_NORMAL)("CMOS:Trying to set alarm");
cmos.regs[cmos.reg]=val;
break;
case 0x0a: /* Status reg A */
cmos.regs[cmos.reg]=val & 0x7f;
if (val & 0x70!=0x20) LOG(LOG_BIOS,LOG_ERROR)("CMOS Illegal 22 stage divider value");
cmos.timer.div=(val & 0xf);
cmos_checktimer();
break;
case 0x0b: /* Status reg B */
cmos.bcd=!(val & 0x4);
cmos.regs[cmos.reg]=val & 0x7f;
cmos.timer.enabled=(val & 0x40)>0;
if (val&0x10) LOG(LOG_BIOS,LOG_ERROR)("CMOS:Updated ended interrupt not supported yet");
cmos_checktimer();
break;
case 0x0f: /* Shutdown status byte */
cmos.regs[cmos.reg]=val & 0x7f;
break;
default:
cmos.regs[cmos.reg]=val & 0x7f;
LOG(LOG_BIOS,LOG_ERROR)("CMOS:WRite to unhandled register %x",cmos.reg);
}
}
#define MAKE_RETURN(_VAL) (cmos.bcd ? (((_VAL / 10) << 4) | (_VAL % 10)) : _VAL);
static Bit8u cmos_readreg(Bit32u port) {
if (cmos.reg>0x3f) {
LOG(LOG_BIOS,LOG_ERROR)("CMOS:Read from illegal register %x",cmos.reg);
return 0xff;
}
time_t curtime;
struct tm *loctime;
/* Get the current time. */
curtime = time (NULL);
/* Convert it to local time representation. */
loctime = localtime (&curtime);
switch (cmos.reg) {
case 0x00: /* Seconds */
return MAKE_RETURN(loctime->tm_sec);
case 0x02: /* Minutes */
return MAKE_RETURN(loctime->tm_min);
case 0x04: /* Hours */
return MAKE_RETURN(loctime->tm_hour);
case 0x06: /* Day of week */
return MAKE_RETURN(loctime->tm_wday);
case 0x07: /* Date of month */
return MAKE_RETURN(loctime->tm_mday);
case 0x08: /* Month */
return MAKE_RETURN(loctime->tm_mon);
case 0x09: /* Year */
return MAKE_RETURN(loctime->tm_year);
case 0x01: /* Seconds Alarm */
case 0x03: /* Minutes Alarm */
case 0x05: /* Hours Alarm */
return cmos.regs[cmos.reg];
case 0x0a: /* Status register C */
if (PIC_Index()<0x2) {
return (cmos.regs[0x0a]&0x7f) | 0x80;
} else {
return (cmos.regs[0x0a]&0x7f);
}
case 0x0c: /* Status register C */
if (cmos.timer.enabled) {
/* In periodic interrupt mode only care for those flags */
Bit8u val=cmos.regs[0xc];
cmos.regs[0xc]=0;
return val;
} else {
/* Give correct values at certain times */
Bit8u val=0;
Bit64u index=PIC_MicroCount();
if (index>=(cmos.last.timer+cmos.timer.micro)) {
cmos.last.timer=index;
val|=0x40;
}
if (index>=(cmos.last.ended+1000000)) {
cmos.last.ended=index;
val|=0x10;
}
return val;
}
case 0x0b: /* Status register B */
case 0x0f: /* Shutdown status byte */
case 0x17: /* Extended memory in KB Low Byte */
case 0x18: /* Extended memory in KB High Byte */
case 0x30: /* Extended memory in KB Low Byte */
case 0x31: /* Extended memory in KB High Byte */
return cmos.regs[cmos.reg];
default:
LOG(LOG_BIOS,LOG_NORMAL)("CMOS:Read from reg %F",cmos.reg);
return cmos.regs[cmos.reg];
}
}
void CMOS_Init(Section* sec) {
IO_RegisterWriteHandler(0x70,cmos_selreg,"CMOS");
IO_RegisterWriteHandler(0x71,cmos_writereg,"CMOS");
IO_RegisterReadHandler(0x71,cmos_readreg,"CMOS");
cmos.timer.enabled=false;
cmos.reg=0xa;
cmos_writereg(0x71,0x26);
cmos.reg=0xb;
cmos_writereg(0x71,0);
/* Fill in extended memory size */
Bitu exsize=(MEM_TotalPages()*4)-1024;
cmos.regs[0x17]=(Bit8u)exsize;
cmos.regs[0x18]=(Bit8u)(exsize >> 8);
cmos.regs[0x30]=(Bit8u)exsize;
cmos.regs[0x31]=(Bit8u)(exsize >> 8);
}