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ncurses/thx.cc

629 lines
12 KiB
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2017-02-07 20:07:58 +00:00
#include <curses.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <math.h>
struct data // Eine Zeile Speicher
{
struct data* plast;
struct data* pnext;
unsigned char vals[16];
unsigned long zeile;
char len;
};
struct cpos // Cursor-Position
{
char x,y;
}pos;
int mode=1;
WINDOW *stdscr,*woffs,*whex, *wascii, *wtop, *wbot;
const char *topline= " Offset Hex ASCII ";
char xoffs[] = "12345678",*soffs;
char xhex[] = " 14 15 16 32 32 34 20 54 61 67 65 73 61 6D 74 0D ",*shex;
char xascii[] = "1234567890123456",*sascii;
int result;
char *ptv="12345678";
FILE *fp;
int ipoint;
data daten,*pdaten,*pfirst, *phelp;
void initvar()
{
pfirst=&daten;
(*pfirst).plast=NULL;
(*pfirst).pnext=NULL;
(*pfirst).zeile=0;
(*pfirst).len=0;
soffs=xoffs;
shex=xhex;
sascii=xascii;
}
void miniinit()
{
xoffs = " ";
xhex = " ";
xascii = " ";
}
int screeninit()
{
int retval=0;
stdscr= initscr();
if(start_color()) retval=1;
nonl();
intrflush(stdscr, FALSE);
keypad(stdscr, TRUE);
// Zwei Fenster
woffs =newwin(18,10,3 ,0 );
whex =newwin(18,52,3 ,10);
wascii=newwin(18,18,3 ,62);
wtop =newwin(3 ,80,0 ,0 );
wbot =newwin(4 ,80,21,0 );
// Scrollen erlauben
scrollok(woffs,1);
scrollok(whex,1);
scrollok(wascii,1);
// Tastatureingabe erlauben
keypad(stdscr,1);
keypad(whex,1);
keypad(wascii,1);
// Echo ausschalten
noecho();
// Cursor auf Gro<72> setzen
if(curs_set(2)==ERR) retval=1 ;
// Color-Pairs anlegen (Farbkombinationen)
if(init_pair(1,COLOR_BLUE,COLOR_BLACK)) retval=1;
if(init_pair(2,COLOR_CYAN,COLOR_BLACK)) retval=1;
wattrset(woffs,COLOR_PAIR(1));
wattrset(whex,COLOR_PAIR(1));
wattrset(wascii,COLOR_PAIR(1));
wattrset(wbot,COLOR_PAIR(1));
wattrset(wtop,COLOR_PAIR(1));
box(woffs,0,0);
box(whex,0,0);
box(wascii,0,0);
box(wtop,0,0);
box(wbot,0,0);
wattrset(woffs,COLOR_PAIR(2));
wattrset(whex,COLOR_PAIR(2));
wattrset(wascii,COLOR_PAIR(2));
wattrset(wtop,COLOR_PAIR(2));
wattrset(wbot,COLOR_PAIR(2));
return(retval);
}
char* tonumsysx(int base10,int newbase)
{
int erg;
int rest=0;
int pos=0;
int i;
static char swap[9];
char c[9];
swap="********";
c[pos]='0'+rest;
while (base10 > 0)
{
erg=base10/newbase;
rest=base10%newbase;
if (rest <= 9)
c[pos]='0'+rest;
else
c[pos]='A'+(rest-10);
base10=erg;
pos++;
c[pos]='\0';
}
while(pos < 8)
{
c[pos]='0';
pos++;
}
pos--;
for (i=0;i<=pos;i++)
{
swap[i]=c[pos-i];
}
return(swap);
}
unsigned long xto10(char *c, int oldbase)
{
unsigned long base10=0;
unsigned long rest,erg;
int pos=0;
int i;
while(c[pos++]);
pos--;
int len=pos-1;
while(pos--)
{
if(isdigit(c[len-pos]))
{
base10 = base10 + (unsigned long)( (double)(c[len-pos]-'0') * ( pow( (double)oldbase,(double)pos ) ) ) ;
}
else
{
base10 = base10 + (unsigned long)( ((double)(c[len-pos]-'A')+10) * ( pow( (double)oldbase,(double)pos ) ) );
}
}
return(base10);
}
int loadcontents()
{
int retval=0;
int x;
char ch;
int k=0;
unsigned long zeile=0;
pdaten=pfirst;
ch=fgetc(fp);
printf("Printing hashmark for every 8 Kbytes.\n");
while (!(feof(fp)))
{
for(x=0;x<16;x++)
{
((*pdaten).vals[x])=ch;
if (feof(fp)) //(*pdaten).vals[x]==EOF)
{
(*pdaten).vals[x]=0;
break;
}
(*pdaten).len=x+1;
ch=fgetc(fp);
}
(*pdaten).zeile=zeile++;
if(!(feof(fp)))
{
phelp=pdaten;
if (!(zeile%500)) {fprintf(stderr,"%c",'#');}
pdaten=((*pdaten).pnext)=(malloc(sizeof(daten)));
// BUG: Check for Memory-Full does not work.
if(!pdaten) {abort();}
(*pdaten).plast=phelp;
(*pdaten).pnext=NULL;
}
}
/* D E B U G O N L Y
pdaten=pfirst;
printf("%d\n",zeile);
while (zeile--)
{
for(x=0;x<16;x++)
{
printf("%c-",(*pdaten).vals[x]);
}
pdaten=(*pdaten).pnext;
}
getchar();
--- END DEBUG ---*/
return (retval);
}
void endscr()
{
delwin(woffs);
delwin(whex);
delwin(wascii);
delwin(wtop);
delwin(wbot);
endwin();
}
void unallocmem()
{
int zv;
/* DEBUG ONLY
pdaten=pfirst;
int zeile=16;
int x;
printf("%d\n",zeile);
while (zeile--)
{
for(x=0;x<16;x++)
{
printf("%c-",(*pdaten).vals[x]);
}
pdaten=(*pdaten).pnext;
}
getchar();
--- END DEBUG ---*/
pdaten=pfirst;
for(;(*pdaten).pnext;pdaten=(*pdaten).pnext)
;
while((*pdaten).plast)
{
phelp=(*pdaten).plast;
free(pdaten);
pdaten=phelp;
}
}
void scrrefresh()
{
wattrset(woffs,COLOR_PAIR(1));
wattrset(whex,COLOR_PAIR(1));
wattrset(wascii,COLOR_PAIR(1));
wattrset(wbot,COLOR_PAIR(1));
wattrset(wtop,COLOR_PAIR(1));
box(woffs,0,0);
box(whex,0,0);
box(wascii,0,0);
box(wtop,0,0);
box(wbot,0,0);
wattrset(woffs,COLOR_PAIR(2));
wattrset(whex,COLOR_PAIR(2));
wattrset(wascii,COLOR_PAIR(2));
wattrset(wtop,COLOR_PAIR(2));
wattrset(wbot,COLOR_PAIR(2));
!mode?wmove(whex,pos.y,pos.x):wmove(wascii,pos.y,pos.x);
wrefresh(woffs);
wrefresh(wtop);
wrefresh(wbot);
// die Reihenfolge wird anhand des Modus bestimmt (das letzte ist aktiv)
!mode?wrefresh(wascii):wrefresh(whex);
mode?wrefresh(wascii):wrefresh(whex);
}
void lineout(unsigned long zeile)
{
int z;
miniinit();
ptv = tonumsysx((*pdaten).zeile*16,16);
for(z=0;z<9;z++)
{
xoffs[z] = *(ptv+z);
}
mvwaddstr(woffs,zeile,1,soffs);
for (z=0;z<(*pdaten).len;z++)
{
ptv = tonumsysx((*pdaten).vals[z],16);
xhex[z*3+1] = *(ptv+6);
xhex[z*3+2] = *(ptv+7);
}
mvwaddstr(whex,zeile,1,shex);
for (z=0;z<(*pdaten).len;z++)
{
// BUG: Die Ober- und Untergrenze genau bestimmen.
xascii[z] = ((((*pdaten).vals[z]) > 31)&&((*pdaten).vals[z] != 127))?((*pdaten).vals[z]):254;
}
mvwaddstr(wascii,zeile,1,sascii);
}
void initout()
{
//Initiale Ausgabe (Alle)
int i;
bool schalter=false;
unsigned long zeile=1;
pdaten=pfirst;
if ((*pdaten).pnext == NULL) schalter=true;
for(i=0;i<16;i++)
{
lineout(i+1);
if (schalter) break;
pdaten=(*pdaten).pnext;
if ((*pdaten).pnext == NULL) schalter=true;
}
scrrefresh();
if(i>15) pdaten=(*pdaten).plast;
}
void scrolld()
{
wscrl(woffs,1);
wscrl(whex,1);
wscrl(wascii,1);
int z;
miniinit();
lineout(16);
}
void scrollu()
{
wscrl(woffs,-1);
wscrl(whex,-1);
wscrl(wascii,-1);
miniinit();
lineout(1);
}
void switchmode()
{
if(mode==0)
{
mode=1; // modus:Hex->Ascii
// Umrechnen der Cursorposition
pos.x=((pos.x+1)/3);
}
else
{
mode=0; // modue:Ascii->Hex
// Umrechnen der Cursorposition
pos.x=((pos.x*3)-1);
}
}
void moveleft()
{
if(mode==0)
{
if(pos.x > 2)(pos.x%3)?pos.x-=2:pos.x--;
}
else
{
if(pos.x > 1)pos.x--;
}
}
void moveright()
{
if(mode==0)
{
if(pos.x < 48)(pos.x%3)?pos.x++:pos.x+=2;
}
else
{
if(pos.x < 16)pos.x++;
}
}
void charin(char ch)
{
int i=0;
// im Speicher zur Cusrorposition bl<62>ttern
while(i<(16-pos.y)&&((*pdaten).plast))
{
i++;
pdaten=(*pdaten).plast;
}
// Wert schreiben
(*pdaten).vals[pos.x-1]=ch;
// Ausgabe aktualisieren
lineout(pos.y);
// wieder zur<75>ckbl<62>ttern
while(i--)
{
pdaten=(*pdaten).pnext;
}
}
int main(int argc, char *argv[])
{
/* --- DEBUG ONLY
printf("DEBUG: 5-%u\n",xto10(tonumsysx(5,2),2));
printf("DEBUG: 16-%u\n",xto10(tonumsysx(16,16),16));
printf("DEBUG: 36-%u\n",xto10 (tonumsysx(36,36),36));
printf("DEBUG: 255-%u\n",xto10(tonumsysx(255,16),16));
printf("DEBUG: 255-%u\n",xto10("FF",16));
printf("DEBUG: 125-%u\n",xto10(tonumsysx(125,8),8));
printf("DEBUG: 255-%u\n",xto10(tonumsysx(255,8),8));
getchar();
--- END DEBUG */
//Variablen
unsigned int i,z; // Allgemeine Z<>hler
unsigned long zeile=0; // Zeilennummer
bool schalter; // Schalter f<>r lesevorlauf
int inpch; // Eingabezeichen
//Vorbereitung
printf("GHEX Version 0.5\n");
//Parameter angegeben?
if(argc < 2)
{
fprintf(stderr,"GHEX-MESSAGE:\n\nUSAGE: %s <filename> \n",argv[0]);
exit(1);
}
//Datei <20>ffnen
fp=fopen(argv[1],"r");
if (fp == NULL)
{
fprintf(stderr,"GHEX-MESSAGE:\n\nERROR opening file: %s \n",argv[1]);
exit(2);
}
// pointer setzen
initvar();
// sonstige Variableninitialisierung
pos.x = pos.y = 1;
//Datei -> Speicher
if(loadcontents())
{
fprintf(stderr,"GHEX-MESSAGE:\n\nERROR reading %s (too less RAM?)\n",argv[1]);
exit(3);
}
// Terminal initialisieren
if(screeninit())
{
endscr();
fprintf(stderr,"!!!Terminal not supported!!! -> Abort \n");
exit(5);
}
mvwaddstr(wtop,1,1,topline);
mvwaddstr(wbot,1,1,argv[1]);
//Hauptprogramm
initout();
scrrefresh();
//Eventschleife
while(inpch!=KEY_F(10))
{
if (mode==0)
{
inpch=wgetch(whex);
}
else
{
inpch=wgetch(wascii);
}
switch(inpch)
{
case KEY_F(9): switchmode();
break;
case KEY_LEFT: moveleft();
break;
case KEY_RIGHT:moveright();
break;
case KEY_DOWN: if(pos.y>15)
{
if ((*pdaten).pnext != NULL)
{ pdaten=(*pdaten).pnext;
scrolld();
}
}
else
{
pos.y++;
}
break;
case KEY_UP: if(pos.y<2)
{
z=0;
while(((*pdaten).plast != NULL)&&(z < 16))
{
pdaten=(*pdaten).plast;
z++;
}
if(z>15)
{
z--;
scrollu();
}
while(z--)
{
if ((*pdaten).pnext != NULL)
{
pdaten=(*pdaten).pnext;
}
}
}
else
{
pos.y--;
}
break;
case KEY_NPAGE:
for(i=0;i<16;i++)
{
if ((*pdaten).pnext != NULL)
{ pdaten=(*pdaten).pnext;
scrolld();
}
}
break;
case KEY_PPAGE:
for(i=0;i<16;i++)
{
z=0;
while(((*pdaten).plast != NULL)&&(z < 16))
{
pdaten=(*pdaten).plast;
z++;
}
if(z>15)
{
z--;
scrollu();
}
while(z--)
{
if ((*pdaten).pnext != NULL)
{
pdaten=(*pdaten).pnext;
}
}
}
break;
case KEY_HOME:
initout();
break;
case KEY_END:
while((*pdaten).pnext)
{
if ((*pdaten).pnext != NULL)
{ pdaten=(*pdaten).pnext;
scrolld();
}
}
break;
default:
if(mode==0)
{
if(isdigit(inpch) || (toupper(inpch)>='A' && toupper(inpch)<='F') )
{
waddch(whex,toupper(inpch));
char hch[]="FF";
// TODO hch korrekt f<>llen. if(pos.x%3)
switchmode(); // um die Koordinaten umzurechnen
charin(xto10(hch,16)); // Umrechnen Hex -> Ascii+charin
switchmode(); // und wieder zur<75>cksetzen
moveright();
}
}
else
{
//if((inpch > 31)&&(inpch < 256))
if((inpch < 256))
{
waddch(wascii,inpch);
charin(inpch);
moveright();
}
}
};
scrrefresh();
}
sleep(1);
endscr();
unallocmem();
return (fclose(fp));
}