2009-05-02 23:03:37 +02:00
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/*
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* Copyright (C) 2002 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 Library 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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/* Character displaying moving functions */
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#include "dosbox.h"
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#include "bios.h"
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#include "mem.h"
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#include "inout.h"
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#include "int10.h"
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2009-05-02 23:27:47 +02:00
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static INLINE void CGA_CopyRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u rold,Bit8u rnew,PhysPt base) {
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PhysPt dest=base+((curmode->twidth*rnew)*(curmode->cheight/2)+cleft)*2;
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PhysPt src=base+((curmode->twidth*rold)*(curmode->cheight/2)+cleft)*2;
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Bitu copy=(cright-cleft)*2;Bitu nextline=curmode->twidth*2;
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for (Bits i=0;i<curmode->cheight/2;i++) {
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MEM_BlockCopy(dest,src,copy);
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MEM_BlockCopy(dest+8*1024,src+8*1024,copy);
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dest+=nextline;src+=nextline;
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}
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}
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2009-05-02 23:12:18 +02:00
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static INLINE void PLANAR4_CopyRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u rold,Bit8u rnew,PhysPt base) {
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PhysPt src,dest;Bitu copy;
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dest=base+(curmode->twidth*rnew)*curmode->cheight+cleft;
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src=base+(curmode->twidth*rold)*curmode->cheight+cleft;
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Bitu nextline=curmode->twidth;
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/* Setup registers correctly */
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IO_Write(0x3ce,5);IO_Write(0x3cf,1); /* Memory transfer mode */
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IO_Write(0x3c4,2);IO_Write(0x3c5,0xf); /* Enable all Write planes */
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/* Do some copying */
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Bitu rowsize=(cright-cleft);
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copy=curmode->cheight;
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for (;copy>0;copy--) {
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for (Bitu x=0;x<rowsize;x++) mem_writeb(dest+x,mem_readb(src+x));
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dest+=nextline;src+=nextline;
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}
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/* Restore registers */
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IO_Write(0x3ce,5);IO_Write(0x3cf,0); /* Normal transfer mode */
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}
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2009-05-02 23:03:37 +02:00
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2009-05-02 23:12:18 +02:00
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static INLINE void TEXT_CopyRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u rold,Bit8u rnew,PhysPt base) {
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PhysPt src,dest;
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src=base+(rold*curmode->twidth+cleft)*2;
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dest=base+(rnew*curmode->twidth+cleft)*2;
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MEM_BlockCopy(dest,src,(cright-cleft)*2);
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}
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2009-05-02 23:03:37 +02:00
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2009-05-02 23:27:47 +02:00
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static INLINE void CGA_FillRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u row,PhysPt base,Bit8u attr) {
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PhysPt dest=base+((curmode->twidth*row)*(curmode->cheight/2)+cleft)*2;
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Bitu copy=(cright-cleft)*2;Bitu nextline=curmode->twidth*2;
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for (Bits i=0;i<curmode->cheight/2;i++) {
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for (Bitu x=0;x<copy;x++) {
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mem_writeb(dest+x,attr);
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mem_writeb(dest+8*1024+x,attr);
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}
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dest+=nextline;
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}
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}
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2009-05-02 23:12:18 +02:00
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static INLINE void PLANAR4_FillRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u row,PhysPt base,Bit8u attr) {
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/* Set Bitmask / Color / Full Set Reset */
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IO_Write(0x3ce,0x8);IO_Write(0x3cf,0xff);
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IO_Write(0x3ce,0x0);IO_Write(0x3cf,attr);
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IO_Write(0x3ce,0x1);IO_Write(0x3cf,0xf);
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/* Write some bytes */
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PhysPt dest;
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dest=base+(curmode->twidth*row)*curmode->cheight+cleft;
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Bitu nextline=curmode->twidth;
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Bitu copy=curmode->cheight; Bitu rowsize=(cright-cleft);
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for (;copy>0;copy--) {
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for (Bitu x=0;x<rowsize;x++) mem_writeb(dest+x,0xff);
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dest+=nextline;
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2009-05-02 23:03:37 +02:00
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}
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2009-05-02 23:12:18 +02:00
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}
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2009-05-02 23:03:37 +02:00
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2009-05-02 23:12:18 +02:00
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static INLINE void TEXT_FillRow(VGAMODES * curmode,Bit8u cleft,Bit8u cright,Bit8u row,PhysPt base,Bit8u attr) {
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/* Do some filing */
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PhysPt dest;
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dest=base+(row*curmode->twidth+cleft)*2;
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Bit16u fill=(attr<<8)+' ';
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for (Bit8u x=0;x<(cright-cleft);x++) {
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mem_writew(dest,fill);
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dest+=2;
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2009-05-02 23:03:37 +02:00
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}
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}
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2009-05-02 23:12:18 +02:00
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void INT10_ScrollWindow(Bit8u rul,Bit8u cul,Bit8u rlr,Bit8u clr,Bit8s nlines,Bit8u attr,Bit8u page) {
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/* Do some range checking */
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2009-05-02 23:03:37 +02:00
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BIOS_NCOLS;BIOS_NROWS;
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if(rul>rlr) return;
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if(cul>clr) return;
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2009-05-02 23:12:18 +02:00
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if(rlr>=nrows) rlr=(Bit8u)nrows-1;
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if(clr>=ncols) clr=(Bit8u)ncols-1;
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clr++;
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/* Get the correct page */
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2009-05-02 23:03:37 +02:00
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if(page==0xFF) page=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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2009-05-02 23:12:18 +02:00
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VGAMODES * curmode=GetCurrentMode();
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PhysPt base=PhysMake(curmode->sstart,curmode->slength*page);
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/* See how much lines need to be copies */
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Bit8u start,end;Bits next;
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/* Copy some lines */
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if (nlines>0) {
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start=rlr-nlines+1;
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end=cul;
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next=-1;
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} else if (nlines<0) {
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2009-05-02 23:20:05 +02:00
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start=rul-nlines-1;
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end=rlr;
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2009-05-02 23:12:18 +02:00
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next=1;
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} else {
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nlines=rlr-rul+1;
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goto filling;
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2009-05-02 23:03:37 +02:00
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}
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2009-05-02 23:12:18 +02:00
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do {
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start+=next;
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switch (curmode->memmodel) {
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case MTEXT:
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case CTEXT:
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TEXT_CopyRow(curmode,cul,clr,start,start+nlines,base);break;
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2009-05-02 23:27:47 +02:00
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case CGA:
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CGA_CopyRow(curmode,cul,clr,start,start+nlines,base);break;
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2009-05-02 23:12:18 +02:00
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case PLANAR4:
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PLANAR4_CopyRow(curmode,cul,clr,start,start+nlines,base);break;
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}
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} while (start!=end);
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/* Fill some lines */
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filling:
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if (nlines>0) {
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start=rul;
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} else {
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2009-05-02 23:20:05 +02:00
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nlines=-nlines;
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start=rlr-nlines+1;
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2009-05-02 23:03:37 +02:00
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}
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2009-05-02 23:12:18 +02:00
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for (;nlines>0;nlines--) {
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switch (curmode->memmodel) {
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case MTEXT:
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case CTEXT:
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TEXT_FillRow(curmode,cul,clr,start,base,attr);break;
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2009-05-02 23:27:47 +02:00
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case CGA:
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CGA_FillRow(curmode,cul,clr,start,base,attr);break;
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2009-05-02 23:12:18 +02:00
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case PLANAR4:
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PLANAR4_FillRow(curmode,cul,clr,start,base,attr);break;
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}
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start++;
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}
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2009-05-02 23:03:37 +02:00
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}
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void INT10_SetActivePage(Bit8u page) {
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Bit16u mem_address;
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Bit8u cur_col=0 ,cur_row=0 ;
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VGAMODES * curmode=GetCurrentMode();
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if (curmode==0) return;
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if (page>7) return;
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2009-05-02 23:12:18 +02:00
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mem_address=page*curmode->slength;
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/* Write the new page start */
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2009-05-02 23:03:37 +02:00
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real_writew(BIOSMEM_SEG,BIOSMEM_CURRENT_START,mem_address);
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2009-05-02 23:12:18 +02:00
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if (curmode->svgamode<8) mem_address>>=1;
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2009-05-02 23:03:37 +02:00
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2009-05-02 23:12:18 +02:00
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/* Write the new start address in vgahardware */
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2009-05-02 23:03:37 +02:00
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS),0x0c);
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2009-05-02 23:12:18 +02:00
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS)+1,(mem_address&0xff00)>>8);
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2009-05-02 23:03:37 +02:00
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS),0x0d);
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2009-05-02 23:12:18 +02:00
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS)+1,mem_address&0x00ff);
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2009-05-02 23:03:37 +02:00
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// And change the BIOS page
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real_writeb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE,page);
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// Display the cursor, now the page is active
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INT10_SetCursorPos(cur_row,cur_col,page);
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}
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void INT10_SetCursorPos(Bit8u row,Bit8u col,Bit8u page) {
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Bit16u address;
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if(page>7) return;
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// Bios cursor pos
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real_writeb(BIOSMEM_SEG,BIOSMEM_CURSOR_POS+page*2,col);
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real_writeb(BIOSMEM_SEG,BIOSMEM_CURSOR_POS+page*2+1,row);
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// Set the hardware cursor
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Bit8u current=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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if(page==current) {
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// Get the dimensions
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BIOS_NCOLS;BIOS_NROWS;
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// Calculate the address knowing nbcols nbrows and page num
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address=SCREEN_IO_START(ncols,nrows,page)+col+row*ncols;
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// CRTC regs 0x0e and 0x0f
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS),0x0e);
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS)+1,(address&0xff00)>>8);
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS),0x0f);
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IO_Write(real_readw(BIOSMEM_SEG,BIOSMEM_CRTC_ADDRESS)+1,address&0x00ff);
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}
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}
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void INT10_ReadCharAttr(Bit16u * result,Bit8u page) {
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if(page==0xFF) page=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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BIOS_NCOLS;BIOS_NROWS;
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Bit8u cur_row=CURSOR_POS_ROW(page);
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Bit8u cur_col=CURSOR_POS_COL(page);
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Bit16u address=SCREEN_MEM_START(ncols,nrows,page)+(cur_col+cur_row*ncols)*2;
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*result=real_readw(0xb800,address);
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}
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INLINE static void WriteChar(Bit16u col,Bit16u row,Bit8u page,Bit8u chr,Bit8u attr,bool useattr) {
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VGAMODES * curmode=GetCurrentMode();
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switch (curmode->type) {
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case TEXT:
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{
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// Compute the address
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Bit16u address=SCREEN_MEM_START(curmode->twidth,curmode->theight,page)+(col+row*curmode->twidth)*2;
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// Write the char
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real_writeb(0xb800,address,chr);
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if (useattr) {
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real_writeb(0xb800,address+1,attr);
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}
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}
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break;
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case GRAPH:
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{
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/* Amount of lines */
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Bit8u * fontdata;
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Bit16u x,y;
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switch (curmode->cheight) {
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case 8:
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// fontdata=&int10_font_08[chr*8];
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2009-05-02 23:12:18 +02:00
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if (chr<128) fontdata=Real2Host(RealGetVec(0x43))+chr*8;
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else fontdata=Real2Host(RealGetVec(0x1F))+(chr-128)*8;
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2009-05-02 23:03:37 +02:00
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break;
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case 14:
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fontdata=&int10_font_14[chr*14];
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break;
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case 16:
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fontdata=&int10_font_16[chr*16];
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break;
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default:
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LOG_ERROR("INT10:Teletype Illegal Font Height");
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return;
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}
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x=8*col;
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y=curmode->cheight*row;
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//TODO Check for out of bounds
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for (Bit8u h=0;h<curmode->cheight;h++) {
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Bit8u bitsel=128;
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Bit8u bitline=*fontdata++;
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Bit16u tx=x;
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while (bitsel) {
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if (bitline&bitsel) INT10_PutPixel(tx,y,page,attr);
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else INT10_PutPixel(tx,y,page,0);
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tx++;
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bitsel>>=1;
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}
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y++;
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}
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}
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break;
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}
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}
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void INT10_WriteChar(Bit8u chr,Bit8u attr,Bit8u page,Bit16u count,bool showattr) {
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if(page==0xFF) page=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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Bit8u cur_row=CURSOR_POS_ROW(page);
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Bit8u cur_col=CURSOR_POS_COL(page);
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2009-05-02 23:12:18 +02:00
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BIOS_NCOLS;BIOS_NROWS;
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2009-05-02 23:03:37 +02:00
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while (count>0) {
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WriteChar(cur_col,cur_row,page,chr,attr,showattr);
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count--;
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2009-05-02 23:12:18 +02:00
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cur_col++;
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if(cur_col==ncols) {
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cur_col=0;
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cur_row++;
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}
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2009-05-02 23:03:37 +02:00
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}
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}
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void INT10_TeletypeOutput(Bit8u chr,Bit8u attr,bool showattr, Bit8u page) {
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if(page==0xFF) page=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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BIOS_NCOLS;BIOS_NROWS;
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Bit8u cur_row=CURSOR_POS_ROW(page);
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Bit8u cur_col=CURSOR_POS_COL(page);
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switch (chr) {
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case 7:
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//TODO BEEP
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break;
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case 8:
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if(cur_col>0) cur_col--;
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break;
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case '\r':
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cur_col=0;
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break;
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case '\n':
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cur_col=0;
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cur_row++;
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break;
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case '\t':
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do {
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INT10_TeletypeOutput(' ',attr,showattr,page);
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cur_row=CURSOR_POS_ROW(page);
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cur_col=CURSOR_POS_COL(page);
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} while(cur_col%8==0);
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break;
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default:
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/* Draw the actual Character */
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WriteChar(cur_col,cur_row,page,chr,attr,showattr);
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cur_col++;
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}
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if(cur_col==ncols) {
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cur_col=0;
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cur_row++;
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}
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// Do we need to scroll ?
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if(cur_row==nrows) {
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2009-05-02 23:12:18 +02:00
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INT10_ScrollWindow(0,0,nrows-1,ncols-1,-1,0x07,page);
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2009-05-02 23:03:37 +02:00
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cur_row--;
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}
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// Set the cursor for the page
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INT10_SetCursorPos(cur_row,cur_col,page);
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}
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2009-05-02 23:12:18 +02:00
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void INT10_WriteString(Bit8u row,Bit8u col,Bit8u flag,Bit8u attr,PhysPt string,Bit16u count,Bit8u page) {
|
2009-05-02 23:03:37 +02:00
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if(page==0xFF) page=real_readb(BIOSMEM_SEG,BIOSMEM_CURRENT_PAGE);
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BIOS_NCOLS;BIOS_NROWS;
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Bit8u cur_row=CURSOR_POS_ROW(page);
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Bit8u cur_col=CURSOR_POS_COL(page);
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// if row=0xff special case : use current cursor position
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if (row==0xff) {
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row=cur_row;
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col=cur_col;
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}
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INT10_SetCursorPos(row,col,page);
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while (count>0) {
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Bit8u chr=mem_readb(string);
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string++;
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if (flag&2) {
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attr=mem_readb(string);
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string++;
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}
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INT10_TeletypeOutput(chr,attr,true,page);
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count--;
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}
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if (flag & 1) {
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INT10_SetCursorPos(cur_row,cur_col,page);
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}
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}
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