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greg |
2.1 |
#ifndef lint
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greg |
2.14 |
static const char RCSid[] = "$Id: oki20.c,v 2.13 2004/03/28 20:33:14 schorsch Exp $";
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greg |
2.1 |
#endif
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/*
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greg |
2.7 |
* oki20.c - program to dump pixel file to OkiMate 20 printer.
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greg |
2.1 |
*/
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#include <stdio.h>
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greg |
2.9 |
#include <time.h>
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greg |
2.1 |
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schorsch |
2.10 |
#include "platform.h"
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schorsch |
2.11 |
#include "rtprocess.h"
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greg |
2.1 |
#include "color.h"
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#include "resolu.h"
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greg |
2.6 |
#define NROWS 1440 /* 10" at 144 dpi */
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#define NCOLS 960 /* 8" at 120 dpi */
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greg |
2.1 |
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greg |
2.6 |
#define ASPECT (120./144.) /* pixel aspect ratio */
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greg |
2.1 |
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schorsch |
2.12 |
#define FILTER "pfilt -1 -x %d -y %d -p %f",NCOLS,NROWS,ASPECT
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#define FILTER_F "pfilt -1 -x %d -y %d -p %f \"%s\"",NCOLS,NROWS,ASPECT
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greg |
2.1 |
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long lpat[NCOLS];
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int dofilter = 0; /* filter through pfilt first? */
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schorsch |
2.13 |
static int printp(char *fname);
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static void plotscan(COLR scan[], int len, int y);
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static int bit(COLR col, int x);
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greg |
2.6 |
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schorsch |
2.13 |
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int
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main(
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int argc,
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char *argv[]
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)
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greg |
2.1 |
{
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int i, status = 0;
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schorsch |
2.10 |
SET_DEFAULT_BINARY();
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SET_FILE_BINARY(stdin);
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SET_FILE_BINARY(stdout);
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greg |
2.1 |
if (argc > 1 && !strcmp(argv[1], "-p")) {
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dofilter++;
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argv++; argc--;
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}
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if (argc < 2)
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status = printp(NULL) == -1;
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else
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for (i = 1; i < argc; i++)
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status += printp(argv[i]) == -1;
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exit(status);
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}
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schorsch |
2.13 |
static int
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printp( /* print a picture */
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char *fname
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)
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greg |
2.1 |
{
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schorsch |
2.12 |
char buf[PATH_MAX];
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greg |
2.1 |
FILE *input;
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int xres, yres;
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COLR scanline[NCOLS];
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int i;
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if (dofilter) {
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greg |
2.2 |
if (fname == NULL) {
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schorsch |
2.12 |
sprintf(buf, FILTER);
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greg |
2.2 |
fname = "<stdin>";
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} else
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schorsch |
2.12 |
sprintf(buf, FILTER_F, fname);
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greg |
2.1 |
if ((input = popen(buf, "r")) == NULL) {
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fprintf(stderr, "Cannot execute: %s\n", buf);
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return(-1);
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}
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} else if (fname == NULL) {
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input = stdin;
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fname = "<stdin>";
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} else if ((input = fopen(fname, "r")) == NULL) {
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fprintf(stderr, "%s: cannot open\n", fname);
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return(-1);
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}
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/* discard header */
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if (checkheader(input, COLRFMT, NULL) < 0) {
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fprintf(stderr, "%s: not a Radiance picture\n", fname);
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return(-1);
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}
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/* get picture dimensions */
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if (fgetresolu(&xres, &yres, input) < 0) {
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fprintf(stderr, "%s: bad picture size\n", fname);
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return(-1);
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}
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greg |
2.3 |
if (xres > NCOLS) {
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greg |
2.1 |
fprintf(stderr, "%s: resolution mismatch\n", fname);
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return(-1);
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}
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/* set line spacing (overlap for knitting) */
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greg |
2.4 |
fputs("\0333\042\022", stdout);
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greg |
2.1 |
/* put out scanlines */
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for (i = yres-1; i >= 0; i--) {
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if (freadcolrs(scanline, xres, input) < 0) {
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fprintf(stderr, "%s: read error (y=%d)\n", fname, i);
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return(-1);
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}
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normcolrs(scanline, xres, 0);
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plotscan(scanline, xres, i);
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}
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/* advance page */
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putchar('\f');
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if (dofilter)
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pclose(input);
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else
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fclose(input);
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return(0);
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}
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schorsch |
2.13 |
static void
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plotscan( /* plot a scanline */
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COLR scan[],
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int len,
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int y
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)
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greg |
2.1 |
{
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greg |
2.4 |
int bpos, start, end;
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greg |
2.1 |
register long c;
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register int i;
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greg |
2.4 |
bpos = y % 23;
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for (i = 0; i < len; i++)
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lpat[i] |= (long)bit(scan[i],i) << bpos;
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greg |
2.1 |
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greg |
2.4 |
if (bpos)
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return;
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/* find limits of non-zero print buffer */
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for (i = 0; lpat[i] == 0; i++)
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if (i == len-1) {
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putchar('\n');
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return;
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greg |
2.1 |
}
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greg |
2.4 |
start = i - i%12;
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i = len;
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while (lpat[--i] == 0)
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;
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end = i;
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/* skip to start position */
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for (i = start/12; i-- > 0; )
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putchar(' ');
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/* print non-zero portion of buffer */
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fputs("\033%O", stdout);
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i = end+1-start;
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putchar(i & 255);
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putchar(i >> 8);
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for (i = start; i <= end; i++) {
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c = lpat[i];
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greg |
2.6 |
putchar((int)(c>>16));
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putchar((int)(c>>8 & 255));
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putchar((int)(c & 255));
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greg |
2.5 |
if (y) /* repeat this row next time */
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lpat[i] = (c & 1) << 23;
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else /* or clear for next image */
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lpat[i] = 0L;
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greg |
2.1 |
}
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greg |
2.4 |
putchar('\r');
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putchar('\n');
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fflush(stdout);
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greg |
2.1 |
}
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schorsch |
2.13 |
static int
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bit( /* determine bit value for pixel at x */
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COLR col,
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register int x
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)
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greg |
2.1 |
{
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static int cerr[NCOLS];
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static int err;
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int b, errp;
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register int ison;
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b = normbright(col);
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errp = err;
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err += b + cerr[x];
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ison = err < 128;
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if (!ison) err -= 256;
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err /= 3;
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cerr[x] = err + errp;
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return(ison);
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}
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